Polycystic Kidney Disease 3

Mendelian MONDO:0010916 Pathograph 10 Show in embeddings browser Autosomal Dominant Polycystic Kidney Disease

Polycystic kidney disease 3 is the GANAB form of autosomal dominant polycystic kidney disease. Its clinical signature is an inversion of the usual ADPKD picture: kidney disease is mild and often does not progress to end-stage renal disease, while liver involvement is variable and can be severe. Some families present as polycystic liver disease with few or no renal cysts at all, so the same gene sits on both sides of a boundary that used to separate two disorders. The mechanism explains the inversion. GANAB encodes the alpha subunit of glucosidase II, an endoplasmic-reticulum enzyme that trims N-linked glycans during glycoprotein quality control. It is not part of the polycystin complex. What it does is allow polycystin-1 to mature and reach the cell surface and the primary cilium, so the lesion sits one step upstream of the PKD1 and PKD2 lesions rather than alongside them. In GANAB-null cells, glucosidase II alpha is absolutely required for maturation and surface and ciliary localisation of both polycystin-1 and polycystin-2, and cells carrying a single functional copy show reduced mature polycystin-1. Wild-type but not mutant protein rescues the defect. Cystogenesis is therefore driven by defective polycystin-1 maturation rather than by loss of the channel complex itself. That upstream position is also why GANAB belongs to a group the polycystin genes do not. Its partner subunit, glucosidase II beta, is encoded by PRKCSH, a long-established polycystic liver disease gene, and independent work placed GANAB alongside SEC63, ALG8 and SEC61B as endoplasmic-reticulum protein biogenesis genes whose loss impairs polycystin-1 maturation. The unifying claim is that these are modulators of polycystin-1 rather than second copies of it, and that the amount of correctly folded polycystin-1 a cell achieves is what sets where a patient lands on the kidney-to-liver spectrum. Clinically the practical consequence is about expectations and therapy. ADPKD management is organised around rapid progressors, and vasopressin V2 receptor antagonism is approved for rapidly progressive disease. A GANAB patient is characteristically not that patient, so importing the standard ADPKD trajectory would misinform counselling in the direction of unwarranted alarm about the kidneys and unwarranted reassurance about the liver.

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1
Mappings
1
Inheritance
4
Pathophys.
2
Phenotypes
3
Gaps
10
Pathograph
1
Genes
4
Medical Actions
1
Models
2
References
1
Deep Research
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Mappings

MONDO
MONDO:0010916 polycystic kidney disease 3 with or without polycystic liver disease
skos:exactMatch MONDO
MONDO:0010916 is the GANAB-related polycystic kidney and liver disease concept modeled by this entry, and is a child of MONDO:0004691 autosomal dominant polycystic kidney disease.
👪

Inheritance

1
Autosomal dominant HP:0000006
Inherited in an autosomal dominant manner, with heterozygous loss-of-function alleles sufficient to impair polycystin-1 maturation. For counselling: each child of a carrier has a 50 percent chance of inheriting the variant, 10 to 20 percent of affected individuals carry a de novo variant, and once the familial variant is known GeneReviews states that prenatal and preimplantation genetic testing are available.
Autosomal dominant inheritance
Show evidence (3 references)
PMID:27259053 SUPPORT Human Clinical
"Overall, we show that GANAB mutations cause ADPKD and ADPLD"
Establishes GANAB as a cause of two autosomal dominant disorders.
PMID:20301424 SUPPORT Other
"Each child of an individual who is heterozygous for an ADPKD-causing pathogenic variant has a 50% chance of inheriting the pathogenic variant."
Gives the transmission risk for counselling. Graded OTHER as expert-review guidance. Unlike the Clinical Characteristics material this entry deliberately excludes, the counselling section names GANAB explicitly and its content is not PKD1-specific, so it applies here directly.
PMID:20301424 SUPPORT Other
"Most individuals diagnosed with ADPKD have an affected parent; 10%-20% of affected individuals have the disorder as the result of a de novo pathogenic variant."
Gives the de novo rate, which matters for counselling a carrier with no family history. Graded OTHER as expert-review guidance.
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Discussions and Knowledge Gaps

3
Why does polycystin-1 remain unaffected in the Ganab heterozygous mouse kidney when it is reduced in human GANAB heterozygous cells, and which result describes the patient?
HUMAN MODEL MISMATCH OPEN pkd3_mouse_contradicts_human_pc1_defect
The two experiments disagree on the readout that the whole mechanism rests on. Human GANAB(+/-) cells show reduced mature polycystin-1, and that is the evidence connecting the gene to cystogenesis. The mouse heterozygote achieves the intended halving of Ganab protein and reports polycystin-1 and polycystin-2 expression unaffected, with no cysts anywhere. The mouse authors draw the strong conclusion, that Ganab may not be causative at all. Several things could reconcile them and none has been tested. The human work measured mature glycoform specifically while the mouse measured expression, which are different quantities. Mouse cyst models across the ADPKD genes generally need a second hit or prolonged time, so an unstressed young heterozygote may simply be below threshold. Species differences in glucosidase II dependence are plausible given that the human phenotype is itself mild. Until this is resolved, the entry's central mechanism rests on human cell work and human genetics, with the only whole-animal test of it returning negative, and that should be visible rather than smoothed over.
Show evidence (2 references)
PMID:32550232 REFUTE Model Organism
"Homozygous Ganab mutations are lethal in the fetal stage, and Ganab haploinsufficiency does not cause kidney or liver cysts in mice, suggesting that it may not be the causative gene in polycystic kidney disease."
The mouse study's own conclusion, which challenges the gene-disease claim rather than merely failing to confirm it.
PMID:27259053 SUPPORT In Vitro
"reduced mature PC1 was seen in GANAB(+/-) cells"
The human heterozygous-cell result the mouse kidney contradicts.
What determines whether a GANAB carrier follows the expected mild renal course or progresses rapidly?
KNOWLEDGE GAP OPEN pkd3_mildness_is_modal_not_guaranteed
Mild kidney disease is the characterisation from the discovery cohort and is the basis on which a GANAB result would reassure a patient. But a reported 18-year-old carrier fell into Mayo imaging class 1E, the class predicting rapid progression to end-stage renal disease, and the report was written specifically to question the mildness assumption. With around twenty published carriers there is no basis for a modifier analysis, and no genotype-phenotype rule separates the two courses. The clinical consequence is concrete: mildness governs surveillance intervals and whether disease-modifying therapy is considered at all, and a counselling message built on the cohort description will occasionally be wrong.
Show evidence (1 reference)
PMID:40134995 SUPPORT Human Clinical
"The GANAB gene mutation found in this patient is typically associated with mild kidney disease; however, according to the Mayo Clinic Imaging Classification (MIC) for ADPKD, our patient falls under Classification 1E, which is predictive of rapid progression to end-stage renal disease (ESRD)."
Documents a carrier at the severe end and states the challenge to the mildness assumption explicitly.
Do GANAB carriers carry the ADPKD-associated intracranial aneurysm risk?
KNOWLEDGE GAP OPEN pkd3_intracranial_aneurysm_risk_unknown
Attached to
Intracranial aneurysm is a cardinal extrarenal feature of ADPKD, occurring at roughly fivefold the general-population rate, and its presence or absence drives whether a patient is offered magnetic resonance angiography screening. No GANAB-specific report in the reference cache addresses it either way. This entry deliberately does not import it from the ADPKD-general GeneReviews chapter, because that chapter describes the PKD1-dominated picture and importing it would manufacture a GANAB phenotype from a statement about a different genotype. Equally, absence of evidence in twenty published carriers is not evidence of absence, and a curator reading this entry should not conclude the risk is zero.

Pathophysiology

4
GANAB Loss of Function
Heterozygous loss-of-function variants in GANAB, mostly truncating, reduce the dose of glucosidase II alpha. The gene was found by whole-exome sequencing of genetically unresolved ADPKD families and confirmed by Sanger screening of a further 321 families, yielding nine families and twenty affected individuals across both ADPKD and autosomal dominant polycystic liver disease presentations.
GANAB hgnc:4138 HUGO Gene Nomenclature Committee (hgnc) Relation: this pathophysiological event involves this gene This pathophysiological event involves decreased GANAB (hgnc:4138). hgnc:4138 is a gene from the HUGO Gene Nomenclature Committee. ↓ DECREASED
Genetic context GANAB hgnc:4138 HUGO Gene Nomenclature Committee (hgnc) Relation: this genetic context concerns this gene This genetic context concerns GANAB (hgnc:4138). hgnc:4138 is a gene from the HUGO Gene Nomenclature Committee. variant_origin: GERMLINE zygosity: HETEROZYGOUS functional_impact_category: LOSS_OF_FUNCTION
Heterozygous loss-of-function alleles, predominantly truncating, in a gene whose reduced dose is sufficient to impair polycystin-1 maturation.
glucosidase activity GO:0015926 Gene Ontology (GO) Relation: this pathophysiological event involves this molecular function This pathophysiological event involves decreased glucosidase activity (GO:0015926). GO:0015926 is a molecular function from the Gene Ontology. ↓ DECREASED
endoplasmic reticulum GO:0005783 Gene Ontology (GO) Relation: this pathophysiological event involves this cellular component This pathophysiological event involves endoplasmic reticulum (GO:0005783). GO:0005783 is a cellular component from the Gene Ontology.
Show evidence (1 reference)
PMID:27259053 SUPPORT Human Clinical
"Sanger screening of 321 additional GUR families identified eight further likely mutations (six truncating), and a total of 20 affected individuals were identified in seven ADPKD- and two ADPLD-affected families."
Establishes the allele spectrum as predominantly truncating and the size of the cohort on which this disease concept rests.
Impaired Polycystin-1 Maturation and Trafficking
Polycystin-1 requires glucosidase II alpha to complete its endoplasmic-reticulum maturation and reach the cell surface and the primary cilium. Without it, the protein does not mature; with one functional copy, less mature protein is made. Rescue is allele-specific: wild-type glucosidase II alpha restores polycystin-1 surface localisation in null cells and mutant protein does not, which ties the cellular defect to the patient alleles rather than to the knockout alone. This is the step that distinguishes the disorder from PKD1 and PKD2. Those lesions remove or alter the polycystin complex itself; this one leaves the complex intact and starves it of correctly folded polycystin-1.
protein maturation GO:0051604 Gene Ontology (GO) Relation: this pathophysiological event involves this biological process This pathophysiological event involves decreased protein maturation (GO:0051604). GO:0051604 is a biological process from the Gene Ontology. ↓ DECREASED protein folding in endoplasmic reticulum GO:0034975 Gene Ontology (GO) Relation: this pathophysiological event involves this biological process This pathophysiological event involves decreased protein folding in endoplasmic reticulum (GO:0034975). GO:0034975 is a biological process from the Gene Ontology. ↓ DECREASED
ciliary membrane GO:0060170 Gene Ontology (GO) Relation: this pathophysiological event involves this cellular component This pathophysiological event involves ciliary membrane (GO:0060170). GO:0060170 is a cellular component from the Gene Ontology.
Show evidence (2 references)
PMID:27259053 SUPPORT In Vitro
"PC1 surface localization in GANAB(-/-) cells was rescued by wild-type, but not mutant, GIIa."
Allele-specific rescue, which is what connects the cellular phenotype to the variants found in patients.
PMID:28375157 SUPPORT In Vitro
"We inactivated these candidate genes in cell line models to show that loss of function of each results in defective maturation and trafficking of polycystin-1, the central determinant of cyst pathogenesis."
Independent confirmation from a separate cohort and laboratory that GANAB loss impairs polycystin-1 maturation and trafficking.
Renal Cystogenesis
Focal cysts form in the kidney, but the process is milder and slower than in PKD1 or PKD2 and frequently does not reach end-stage renal disease. The reported phenotype is explicitly characterised as mild polycystic kidney disease, which is the feature that most distinguishes this form clinically.
kidney UBERON:0002113 Uberon multi-species anatomy ontology (UBERON) Relation: this pathophysiological event occurs in this anatomical location This pathophysiological event occurs in kidney (UBERON:0002113). UBERON:0002113 is an anatomical location from the Uberon multi-species anatomy ontology.
Show evidence (2 references)
PMID:27259053 SUPPORT Human Clinical
"The phenotype was mild PKD and variable, including severe, PLD."
Characterises the renal phenotype as mild, which is the modal claim this node makes.
PMID:40134995 SUPPORT Human Clinical
"The GANAB gene mutation found in this patient is typically associated with mild kidney disease; however, according to the Mayo Clinic Imaging Classification (MIC) for ADPKD, our patient falls under Classification 1E, which is predictive of rapid progression to end-stage renal disease (ESRD)."
Qualifies rather than supports the mildness claim. A single reported patient fell in the highest-risk imaging class, so mild is the expectation and not a guarantee. Graded PARTIAL because one case cannot overturn the cohort characterisation, and equally cannot be dismissed by it.
Hepatic Cystogenesis
Liver cysts are variable and can be severe, and in some families dominate the presentation to the point that patients are ascertained as isolated polycystic liver disease with few or no renal cysts. This is the reverse of the usual ADPKD emphasis and is the practical reason a GANAB diagnosis changes surveillance.
liver UBERON:0002107 Uberon multi-species anatomy ontology (UBERON) Relation: this pathophysiological event occurs in this anatomical location This pathophysiological event occurs in liver (UBERON:0002107). UBERON:0002107 is an anatomical location from the Uberon multi-species anatomy ontology.
Show evidence (1 reference)
PMID:27259053 SUPPORT Human Clinical
"The phenotype was mild PKD and variable, including severe, PLD."
Establishes that liver disease is variable and may be severe, in contrast to the mild renal phenotype.

Pathograph

Use the checkboxes to hide or show graph categories. Hover nodes for evidence and cross-linked metadata.
Pathograph: causal mechanism network for Polycystic Kidney Disease 3 Interactive directed graph showing how pathophysiology mechanisms, phenotypes, genetic factors and variants, experimental models, environmental triggers, and treatments relate through causal and linked edges.

Phenotypes

2
Genitourinary 1
Multiple Renal Cysts FREQUENT HP:0005562 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Multiple renal cysts (HP:0005562). HP:0005562 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:27259053 SUPPORT Human Clinical
"The phenotype was mild PKD and variable, including severe, PLD."
Reports polycystic kidney disease as a feature and characterises it as mild.
Other 1
Polycystic Liver Disease FREQUENT HP:0006557 Human Phenotype Ontology (HP) Relation: this clinical feature is this phenotype This clinical feature is Polycystic liver disease (HP:0006557), qualified as severity variable, may be severe. HP:0006557 is a phenotype from the Human Phenotype Ontology.
Severity: variable, may be severe
Show evidence (1 reference)
PMID:27259053 SUPPORT Human Clinical
"a total of 20 affected individuals were identified in seven ADPKD- and two ADPLD-affected families"
Two of nine families presented as polycystic liver disease, establishing the hepatic-dominant presentation.
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Genetic Associations

1
GANAB (CAUSATIVE)
Gene: GANAB hgnc:4138 HUGO Gene Nomenclature Committee (hgnc) Relation: this disease-associated gene is this gene This disease-associated gene is GANAB (hgnc:4138). hgnc:4138 is a gene from the HUGO Gene Nomenclature Committee. variant_origin: GERMLINE
Show evidence (2 references)
PMID:27259053 SUPPORT Human Clinical
"Because PRKCSH encodes GIIβ, GANAB is a strong ADPKD and ADPLD candidate gene."
States the subunit-partner reasoning that made GANAB a candidate and that places this disease alongside the polycystic liver disease genes.
PMID:20301424 SUPPORT Other
"a heterozygous pathogenic variant in PKD1, PKD2, or one of the less common associated genes (ALG5, ALG9, DNAJB11, GANAB, IFT140)"
GeneReviews lists GANAB among the genes whose heterozygous pathogenic variants establish an ADPKD diagnosis. Graded OTHER because the sentence is a diagnostic-criteria statement in an expert review rather than primary human data.
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Medical Actions

4
Blood Pressure Control
Action: PharmacotherapyNCI Thesaurus (NCIT) Relation: this treatment is this clinical intervention This treatment is Pharmacotherapy (NCIT:C15986). NCIT:C15986 is a clinical intervention from the NCI Thesaurus. NCIT:C15986
Hypertension management with ACE inhibitors or angiotensin II receptor blockers, plus dietary modification, is the ADPKD intervention with the broadest applicability and the least dependence on rate of progression, which makes it the one that transfers most safely to a GANAB carrier.
Show evidence (1 reference)
PMID:20301424 SUPPORT Other
"Treatment for hypertension may include ACE inhibitors or angiotensin II receptor blockers and diet modification."
States the ADPKD hypertension recommendation. Graded PARTIAL and OTHER as ADPKD-general expert guidance rather than GANAB-specific evidence.
Vasopressin V2 Receptor Antagonism
Action: PharmacotherapyNCI Thesaurus (NCIT) Relation: this treatment is this clinical intervention This treatment is Pharmacotherapy (NCIT:C15986). NCIT:C15986 is a clinical intervention from the NCI Thesaurus. NCIT:C15986
Agent: tolvaptan CHEBI:32246 Chemical Entities of Biological Interest (CHEBI) Relation: this treatment uses this therapeutic agent This treatment uses tolvaptan (CHEBI:32246). CHEBI:32246 is a therapeutic agent from Chemical Entities of Biological Interest.
Tolvaptan is approved for rapidly progressive ADPKD, and that eligibility criterion is exactly where the GANAB distinction bites. A characteristically mild, often non-progressive kidney phenotype is not the population the approval describes, so this treatment is curated as conditionally applicable rather than indicated, and the condition is the individual patient's demonstrated rate of progression rather than the genotype.
Target Phenotypes: Multiple renal cysts HP:0005562 Human Phenotype Ontology (HP) Relation: this treatment targets this phenotype This treatment targets Multiple renal cysts (HP:0005562). HP:0005562 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:20301424 SUPPORT Other
"Treatment with vasopressin V2 receptor antagonists (e.g., tolvaptan) to slow disease progression is approved for individuals with rapidly progressive disease."
States the approved indication, whose restriction to rapidly progressive disease is the reason this treatment cannot be assumed to apply here. Graded PARTIAL and OTHER: ADPKD-general expert guidance, and no trial has enrolled GANAB carriers as such.
Management of Symptomatic Polycystic Liver Disease
Action: Surgical ProcedureNCI Thesaurus (NCIT) Relation: this treatment is this clinical intervention This treatment is Surgical Procedure (NCIT:C15329). NCIT:C15329 is a clinical intervention from the NCI Thesaurus. NCIT:C15329
The gap this entry most needed to close. Hepatic burden is the part of the phenotype that dominates in many GANAB families, and it has its own escalation ladder that is largely independent of kidney management. Medical measures come first, avoidance of oestrogens plus acid suppression, and severe symptoms escalate to percutaneous aspiration and sclerosis, laparoscopic fenestration, combined hepatic resection with fenestration, selective hepatic artery embolisation, or liver transplantation.
Target Phenotypes: Polycystic liver disease HP:0006557 Human Phenotype Ontology (HP) Relation: this treatment targets this phenotype This treatment targets Polycystic liver disease (HP:0006557). HP:0006557 is a phenotype from the Human Phenotype Ontology.
Show evidence (1 reference)
PMID:20301424 SUPPORT Other
"Symptomatic liver cysts may improve with avoidance of estrogens and the use of H2 blockers or proton pump inhibitors. Severe symptoms may require percutaneous aspiration and sclerosis, laparoscopic fenestration, combined hepatic resection and cyst fenestration, liver transplantation, or..."
States the full medical-to-surgical escalation for symptomatic polycystic liver disease. Graded PARTIAL and OTHER as ADPKD-general expert guidance rather than GANAB-specific evidence, though it applies with more force here than the renal recommendations do, because this is the compartment GANAB carriers are most likely to need it in.
Avoidance of Nephrotoxic and Cyst-Aggravating Exposures
Action: Supportive CareNCI Thesaurus (NCIT) Relation: this treatment is this clinical intervention This treatment is Supportive Care (NCIT:C15747). NCIT:C15747 is a clinical intervention from the NCI Thesaurus. NCIT:C15747
GeneReviews names specific agents and circumstances to avoid. One of them is directly relevant to this entry's phenotype emphasis: oestrogens, and possibly progestogens, should be avoided in individuals with severe polycystic liver disease, which is the presentation GANAB carriers are most likely to reach.
Show evidence (1 reference)
PMID:20301424 SUPPORT Other
"Agents/circumstances to avoid: Long-term administration of nephrotoxic agents, high levels of caffeine, high-salt diet, smoking, and obesity, and in individuals with severe PLD, use of estrogens and possibly progestogens."
The GeneReviews agents-to-avoid list, including the oestrogen caution that is specific to severe polycystic liver disease. Graded PARTIAL and OTHER as ADPKD-general expert guidance.
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Diagnosis

2
Molecular Genetic Testing
A GANAB variant is what distinguishes this entry from ADPKD generally, and imaging cannot make that call. GeneReviews establishes the ADPKD diagnosis on age-specific kidney imaging criteria plus either an affected first-degree relative or a heterozygous pathogenic variant, and lists GANAB among the less common associated genes that satisfy the molecular arm. Because the renal phenotype here is mild and may be atypical in distribution, a patient can fail imaging criteria built around the PKD1 picture and still carry the diagnosis.
Genetic Testing NCIT:C15709 NCI Thesaurus (NCIT)
Results: A heterozygous GANAB loss-of-function variant, or a whole- or partial-gene deletion, in a patient in whom PKD1 and PKD2 have been excluded.
Modality matters here. Single-gene GANAB testing is a cascade test only, because reaching GANAB as a hypothesis already requires PKD1 and PKD2 to have been excluded; the primary test is a multigene cystic kidney and liver panel. That panel must include deletion and duplication analysis: large GANAB deletions are a reported cause, and exome sequencing is structurally poor at detecting them because its short reads and PCR-based amplification give uneven coverage. There is no biochemical test. Glucosidase II activity is not measured clinically, so the enzyme defect that defines the disorder is inferred from the genotype rather than assayed.
Show evidence (2 references)
PMID:20301424 SUPPORT Other
"a heterozygous pathogenic variant in PKD1, PKD2, or one of the less common associated genes (ALG5, ALG9, DNAJB11, GANAB, IFT140)"
Establishes molecular testing including GANAB as a route to the ADPKD diagnosis. Graded OTHER because it is a diagnostic-criteria statement in an expert review, not primary data.
PMID:32405593 SUPPORT Human Clinical
"Because of its 75−base pair read length, WES is not equipped to detect large deletions."
Explains why a testing strategy resting on exome sequencing alone will miss the large GANAB deletions this paper reports, which is the argument for including deletion and duplication analysis in the panel.
Abdominal Imaging of Kidney and Liver
Imaging carries a different weight here than in PKD1. It must cover the liver deliberately rather than incidentally, because hepatic burden may exceed renal burden and in some families is the presenting problem. GeneReviews recommends abdominal computed tomography or magnetic resonance imaging every one to five years in adults depending on disease stage.
Magnetic Resonance Imaging NCIT:C16809 NCI Thesaurus (NCIT)
Applied here as ADPKD-general management rather than GANAB-specific evidence. The interval is deliberately not narrowed for this entry: no GANAB-specific surveillance schedule exists, and the mild-course expectation is itself contested by a reported severe case.
Show evidence (1 reference)
PMID:20301424 SUPPORT Other
"CT or MRI examination of the abdomen with and without contrast enhancement every one to five years in adults depending on disease stage"
States the ADPKD surveillance imaging interval. Graded PARTIAL and OTHER: this is an ADPKD-general expert recommendation, not a GANAB-specific one, and the stage-dependence it assumes was calibrated on a population in which most patients progress faster than GANAB carriers do.
📊

Prevalence

1
Genetically unresolved ADPKD and ADPLD families
Cases In Literature Ultra Rare
Twenty affected individuals in nine families at the time of gene discovery, found by screening 321 genetically unresolved families plus six families that had undergone exome sequencing. This is a share of the unresolved remainder, not a population rate: 7 to 10 percent of ADPKD families and about half of ADPLD families were genetically unresolved before this gene was identified.
Show evidence (1 reference)
PMID:27259053 SUPPORT Human Clinical
"After screening, 7%-10% of ADPKD-affected and ~50% of ADPLD-affected families were genetically unresolved (GUR), suggesting further genetic heterogeneity of both disorders."
Gives the size of the unresolved pool this gene was found within, which is the denominator the case count should be read against.
🐁

Animal Models

1
Ganab heterozygous knockout mouse
CRISPR-Cas9 targeted deletion of Ganab in C57BL/6 mice. Homozygous deletion is embryonic lethal. Heterozygotes reduce Ganab protein by at least half, which is the human genotype, and develop no kidney or liver cysts, no tubular dilatation, no glomerular abnormality and no clinical phenotype. Notably, polycystin-1 and polycystin-2 expression in the heterozygous kidney was unaffected.
Species
Mouse
Genotype
Ganab +/- (CRISPR-Cas9 targeted deletion, C57BL/6)
Publication
Show evidence (1 reference)
PMID:32550232 SUPPORT Model Organism
"To construct a mouse model of Ganab gene deletion, we analyzed the Ganab gene structure and designed two CRISPR-/Cas9-based targeting strategies."
Establishes the model construction, which is what makes its negative result informative rather than merely absent.
{ }

Source YAML

click to show
name: Polycystic Kidney Disease 3
creation_date: "2026-08-29T00:00:00Z"
category: Mendelian
synonyms:
- PKD3
- APKD3
- polycystic kidney disease 3
- polycystic kidney disease type 3
- polycystic kidney disease, adult, type 3
- polycystic kidney disease 3 with or without polycystic liver disease
- autosomal dominant polycystic kidney disease caused by mutation in GANAB
description: >-
  Polycystic kidney disease 3 is the GANAB form of autosomal dominant polycystic
  kidney disease. Its clinical signature is an inversion of the usual ADPKD
  picture: kidney disease is mild and often does not progress to end-stage renal
  disease, while liver involvement is variable and can be severe. Some families
  present as polycystic liver disease with few or no renal cysts at all, so the
  same gene sits on both sides of a boundary that used to separate two disorders.

  The mechanism explains the inversion. GANAB encodes the alpha subunit of
  glucosidase II, an endoplasmic-reticulum enzyme that trims N-linked glycans
  during glycoprotein quality control. It is not part of the polycystin complex.
  What it does is allow polycystin-1 to mature and reach the cell surface and the
  primary cilium, so the lesion sits one step upstream of the PKD1 and PKD2
  lesions rather than alongside them. In GANAB-null cells, glucosidase II alpha is
  absolutely required for maturation and surface and ciliary localisation of both
  polycystin-1 and polycystin-2, and cells carrying a single functional copy show
  reduced mature polycystin-1. Wild-type but not mutant protein rescues the
  defect. Cystogenesis is therefore driven by defective polycystin-1 maturation
  rather than by loss of the channel complex itself.

  That upstream position is also why GANAB belongs to a group the polycystin
  genes do not. Its partner subunit, glucosidase II beta, is encoded by PRKCSH,
  a long-established polycystic liver disease gene, and independent work placed
  GANAB alongside SEC63, ALG8 and SEC61B as endoplasmic-reticulum protein
  biogenesis genes whose loss impairs polycystin-1 maturation. The unifying
  claim is that these are modulators of polycystin-1 rather than second copies
  of it, and that the amount of correctly folded polycystin-1 a cell achieves is
  what sets where a patient lands on the kidney-to-liver spectrum.

  Clinically the practical consequence is about expectations and therapy. ADPKD
  management is organised around rapid progressors, and vasopressin V2 receptor
  antagonism is approved for rapidly progressive disease. A GANAB patient is
  characteristically not that patient, so importing the standard ADPKD
  trajectory would misinform counselling in the direction of unwarranted alarm
  about the kidneys and unwarranted reassurance about the liver.
disease_term:
  preferred_term: polycystic kidney disease 3 with or without polycystic liver disease
  term:
    id: MONDO:0010916
    label: polycystic kidney disease 3 with or without polycystic liver disease
parents:
- Autosomal Dominant Polycystic Kidney Disease
mappings:
  mondo_mappings:
  - term:
      id: MONDO:0010916
      label: polycystic kidney disease 3 with or without polycystic liver disease
    mapping_predicate: skos:exactMatch
    mapping_source: MONDO
    mapping_justification: >-
      MONDO:0010916 is the GANAB-related polycystic kidney and liver disease
      concept modeled by this entry, and is a child of MONDO:0004691 autosomal
      dominant polycystic kidney disease.
references:
- reference: PMID:20301424
  title: "Polycystic Kidney Disease, Autosomal Dominant."
  tags:
  - GeneReviews
- reference: PMID:27259053
  title: >-
    Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause
    Autosomal-Dominant Polycystic Kidney and Liver Disease.
notes: >-
  Scope and lump/split note. This is curated as a standalone entry rather than a
  has_subtypes entry on Autosomal_Dominant_Polycystic_Kidney_Disease, following
  the precedent set by Polycystic_Kidney_Disease_2, which is likewise a
  gene-specific ADPKD form with its own MONDO term and its own entry. Two things
  justify it here beyond precedent: the lesion is mechanistically upstream of the
  polycystin complex rather than in it, and the clinical trajectory is inverted
  relative to PKD1 and PKD2, with mild kidney and potentially severe liver
  disease. The parent entry already lists GANAB in its genetic block as an
  ADPKD-spectrum gene; that record and this entry should be read together, and
  nothing here contradicts it.

  Phenotype sourcing discipline. The GeneReviews chapter for this disease is
  written for ADPKD as a whole and names GANAB only among the less common
  associated genes. Its Clinical Characteristics section therefore describes the
  PKD1-dominated picture: bilateral kidney cysts progressing to end-stage kidney
  disease in about half of patients by age 60, intracranial aneurysms, and the
  wider extrarenal spectrum. Those are deliberately not imported here as GANAB
  phenotypes. Only features the GANAB literature itself reports are curated as
  phenotypes of this entry; the ADPKD-general material is used for management and
  surveillance, where it does apply to a GANAB patient who has cysts, and is
  labelled as such in each case.

  No intracranial aneurysm phenotype. It is a cardinal ADPKD extrarenal feature
  and its absence here is deliberate rather than an oversight: no GANAB-specific
  report in the reference cache describes it, the reported cohort is small, and
  curating it from the ADPKD-general chapter would be exactly the import this
  entry is trying to avoid. It is recorded as a knowledge gap instead.
pathophysiology:
- name: GANAB Loss of Function
  biological_scale: MOLECULAR
  mechanism_confidence: ESTABLISHED
  description: >-
    Heterozygous loss-of-function variants in GANAB, mostly truncating, reduce
    the dose of glucosidase II alpha. The gene was found by whole-exome
    sequencing of genetically unresolved ADPKD families and confirmed by Sanger
    screening of a further 321 families, yielding nine families and twenty
    affected individuals across both ADPKD and autosomal dominant polycystic
    liver disease presentations.
  gene:
    preferred_term: GANAB
    description: >-
      Encodes glucosidase II subunit alpha, the catalytic subunit of the
      endoplasmic-reticulum enzyme required for polycystin-1 maturation.
    modifier: DECREASED
    term:
      id: hgnc:4138
      label: GANAB
  genetic_context:
    gene:
      preferred_term: GANAB
      term:
        id: hgnc:4138
        label: GANAB
    variant_origin: GERMLINE
    zygosity: HETEROZYGOUS
    functional_impact_category: LOSS_OF_FUNCTION
    description: >-
      Heterozygous loss-of-function alleles, predominantly truncating, in a gene
      whose reduced dose is sufficient to impair polycystin-1 maturation.
  molecular_functions:
  - preferred_term: glucosidase activity
    term:
      id: GO:0015926
      label: glucosidase activity
    modifier: DECREASED
  cellular_components:
  - preferred_term: endoplasmic reticulum
    term:
      id: GO:0005783
      label: endoplasmic reticulum
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Sanger screening of 321 additional GUR families identified eight further
      likely mutations (six truncating), and a total of 20 affected individuals
      were identified in seven ADPKD- and two ADPLD-affected families.
    explanation: >-
      Establishes the allele spectrum as predominantly truncating and the size of
      the cohort on which this disease concept rests.
  downstream:
  - target: Impaired Polycystin-1 Maturation and Trafficking
    causal_link_type: DIRECT
    description: >-
      Reduced glucosidase II alpha activity directly impairs the
      quality-control step polycystin-1 depends on.
    evidence:
    - reference: PMID:27259053
      reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
      supports: SUPPORT
      evidence_source: IN_VITRO
      snippet: >-
        Analysis of GANAB-null cells showed an absolute requirement of GIIα for
        maturation and surface and ciliary localization of the ADPKD proteins
        (PC1 and PC2), and reduced mature PC1 was seen in GANAB(+/-) cells.
      explanation: >-
        Demonstrates the requirement directly, and importantly shows the defect
        at heterozygous dose, which is the patient genotype.
- name: Impaired Polycystin-1 Maturation and Trafficking
  biological_scale: MOLECULAR
  mechanism_confidence: ESTABLISHED
  description: >-
    Polycystin-1 requires glucosidase II alpha to complete its
    endoplasmic-reticulum maturation and reach the cell surface and the primary
    cilium. Without it, the protein does not mature; with one functional copy,
    less mature protein is made. Rescue is allele-specific: wild-type glucosidase
    II alpha restores polycystin-1 surface localisation in null cells and mutant
    protein does not, which ties the cellular defect to the patient alleles
    rather than to the knockout alone.

    This is the step that distinguishes the disorder from PKD1 and PKD2. Those
    lesions remove or alter the polycystin complex itself; this one leaves the
    complex intact and starves it of correctly folded polycystin-1.
  biological_processes:
  - preferred_term: protein maturation
    term:
      id: GO:0051604
      label: protein maturation
    modifier: DECREASED
  - preferred_term: protein folding in endoplasmic reticulum
    term:
      id: GO:0034975
      label: protein folding in endoplasmic reticulum
    modifier: DECREASED
  cellular_components:
  - preferred_term: ciliary membrane
    term:
      id: GO:0060170
      label: ciliary membrane
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: IN_VITRO
    snippet: >-
      PC1 surface localization in GANAB(-/-) cells was rescued by wild-type, but
      not mutant, GIIa.
    explanation: >-
      Allele-specific rescue, which is what connects the cellular phenotype to
      the variants found in patients.
  - reference: PMID:28375157
    reference_title: Isolated polycystic liver disease genes define effectors of polycystin-1 function.
    supports: SUPPORT
    evidence_source: IN_VITRO
    snippet: >-
      We inactivated these candidate genes in cell line models to show that loss
      of function of each results in defective maturation and trafficking of
      polycystin-1, the central determinant of cyst pathogenesis.
    explanation: >-
      Independent confirmation from a separate cohort and laboratory that GANAB
      loss impairs polycystin-1 maturation and trafficking.
  downstream:
  - target: Renal Cystogenesis
    causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
    description: >-
      Reduced functional polycystin-1 at the cilium is the proximate cause of
      cyst formation, through the polycystin signalling pathway shared with PKD1
      and PKD2.
    evidence:
    - reference: PMID:27259053
      reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
      supports: SUPPORT
      evidence_source: IN_VITRO
      snippet: >-
        the cystogenesis is most likely driven by defects in PC1 maturation
      explanation: >-
        States the causal chain from polycystin-1 maturation failure to
        cystogenesis. Quoted as the cystogenesis clause only, so that this
        in-vitro claim and the human-genetic claim in the same sentence are cited
        separately rather than sharing one quote with two gradings.
  - target: Hepatic Cystogenesis
    causal_link_type: INDIRECT_KNOWN_INTERMEDIATES
    description: >-
      The same maturation defect operates in biliary epithelium, where it
      produces the liver phenotype that dominates in many GANAB families.
    evidence:
    - reference: PMID:28375157
      reference_title: Isolated polycystic liver disease genes define effectors of polycystin-1 function.
      supports: SUPPORT
      evidence_source: HUMAN_CLINICAL
      snippet: >-
        Here, we have used whole exome sequencing in a discovery cohort of 102
        unrelated patients who were excluded for mutations in the 2 most common
        PCLD genes, PRKCSH and SEC63, to identify heterozygous loss-of-function
        mutations in 3 additional genes, ALG8, GANAB, and SEC61B.
      explanation: >-
        Identifies GANAB in an isolated polycystic liver disease cohort, showing
        the hepatic route is a primary presentation and not merely an ADPKD
        complication.
- name: Renal Cystogenesis
  biological_scale: TISSUE
  mechanism_confidence: ESTABLISHED
  description: >-
    Focal cysts form in the kidney, but the process is milder and slower than in
    PKD1 or PKD2 and frequently does not reach end-stage renal disease. The
    reported phenotype is explicitly characterised as mild polycystic kidney
    disease, which is the feature that most distinguishes this form clinically.
  locations:
  - preferred_term: kidney
    term:
      id: UBERON:0002113
      label: kidney
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      The phenotype was mild PKD and variable, including severe, PLD.
    explanation: >-
      Characterises the renal phenotype as mild, which is the modal claim this
      node makes.
  - reference: PMID:40134995
    reference_title: "GANAB-Associated Severe Autosomal Dominant Polycystic Kidney Disease in an 18-Year-Old Female: A Case Report."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      The GANAB gene mutation found in this patient is typically associated with
      mild kidney disease; however, according to the Mayo Clinic Imaging
      Classification (MIC) for ADPKD, our patient falls under Classification 1E,
      which is predictive of rapid progression to end-stage renal disease (ESRD).
    explanation: >-
      Qualifies rather than supports the mildness claim. A single reported patient
      fell in the highest-risk imaging class, so mild is the expectation and not a
      guarantee. Graded PARTIAL because one case cannot overturn the cohort
      characterisation, and equally cannot be dismissed by it.
- name: Hepatic Cystogenesis
  biological_scale: TISSUE
  mechanism_confidence: ESTABLISHED
  description: >-
    Liver cysts are variable and can be severe, and in some families dominate the
    presentation to the point that patients are ascertained as isolated
    polycystic liver disease with few or no renal cysts. This is the reverse of
    the usual ADPKD emphasis and is the practical reason a GANAB diagnosis
    changes surveillance.
  locations:
  - preferred_term: liver
    term:
      id: UBERON:0002107
      label: liver
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      The phenotype was mild PKD and variable, including severe, PLD.
    explanation: >-
      Establishes that liver disease is variable and may be severe, in contrast
      to the mild renal phenotype.
animal_models:
- name: Ganab heterozygous knockout mouse
  species: Mouse
  genotype: Ganab +/- (CRISPR-Cas9 targeted deletion, C57BL/6)
  publication: PMID:32550232
  description: >-
    CRISPR-Cas9 targeted deletion of Ganab in C57BL/6 mice. Homozygous deletion
    is embryonic lethal. Heterozygotes reduce Ganab protein by at least half,
    which is the human genotype, and develop no kidney or liver cysts, no tubular
    dilatation, no glomerular abnormality and no clinical phenotype. Notably,
    polycystin-1 and polycystin-2 expression in the heterozygous kidney was
    unaffected.
  evidence:
  - reference: PMID:32550232
    reference_title: Ganab Haploinsufficiency Does Not Cause Polycystic Kidney Disease or Polycystic Liver Disease in Mice.
    supports: SUPPORT
    evidence_source: MODEL_ORGANISM
    snippet: >-
      To construct a mouse model of Ganab gene deletion, we analyzed the Ganab
      gene structure and designed two CRISPR-/Cas9-based targeting strategies.
    explanation: >-
      Establishes the model construction, which is what makes its negative result
      informative rather than merely absent.
  modeled_mechanisms:
  - target: Renal Cystogenesis
    relationship: FAILS_TO_RECAPITULATE
    fidelity: LOW
    description: >-
      The mouse heterozygote does not develop the human phenotype. This is a
      substantive negative result rather than a missing experiment: the authors
      conclude that Ganab haploinsufficiency does not cause cysts in mice and go
      further, questioning whether it is the causative gene at all.
    limitations: >-
      Two things limit how far the negative travels. Mouse and human differ in
      cyst susceptibility across the ADPKD genes generally, and mouse models of
      even PKD1 heterozygosity are notoriously slow and often require a second
      hit, so a null result at heterozygous dose in an unstressed mouse is weaker
      evidence against causation than it first appears. And the human evidence is
      not only genetic: GANAB(+/-) human cells show reduced mature polycystin-1,
      which is the specific readout this mouse reports as unaffected. The
      disagreement is therefore between two experiments, not between a gene and a
      phenotype.
    evidence:
    - reference: PMID:32550232
      reference_title: Ganab Haploinsufficiency Does Not Cause Polycystic Kidney Disease or Polycystic Liver Disease in Mice.
      supports: SUPPORT
      evidence_source: MODEL_ORGANISM
      snippet: >-
        Ganab haploinsufficiency does not cause kidney or liver cysts in mice,
        suggesting that it may not be the causative gene in polycystic kidney
        disease.
      explanation: >-
        The authors' own conclusion, which is what makes this a substantive
        negative claim about the model rather than an experiment that was simply
        not run. It supports treating the model as failing to recapitulate the
        node; the readouts below carry the individual measurements.
    readouts:
    - name: Kidney and liver cyst formation
      target: Renal Cystogenesis
      direction: UNCHANGED
      interpretation: >-
        No cysts formed in heterozygous animals, a genuine negative rather than an
        unmeasured outcome.
      evidence:
      - reference: PMID:32550232
        reference_title: Ganab Haploinsufficiency Does Not Cause Polycystic Kidney Disease or Polycystic Liver Disease in Mice.
        supports: REFUTE
        evidence_source: MODEL_ORGANISM
        snippet: >-
          We found that homozygous mutation of the Ganab gene in C57BL/6 mice
          resulted in early embryonic lethality, and there were no cysts in the
          kidneys or livers of Ganab +/- mice.
        explanation: >-
          Reports the absent cyst phenotype at the dose corresponding to the human
          genotype.
    - name: Polycystin-1 and polycystin-2 expression in kidney
      target: Renal Cystogenesis
      direction: UNCHANGED
      interpretation: >-
        Directly contradicts the reduced mature polycystin-1 seen in human
        GANAB(+/-) cells, and is the sharpest point of disagreement between the
        model and the human data.
      evidence:
      - reference: PMID:32550232
        reference_title: Ganab Haploinsufficiency Does Not Cause Polycystic Kidney Disease or Polycystic Liver Disease in Mice.
        supports: REFUTE
        evidence_source: MODEL_ORGANISM
        snippet: >-
          Ganab protein expression was reduced by at least 50%, while the
          expression of ADPKD proteins (PC1 and PC2) and acetylated tubulin was
          not affected in the Ganab +/- kidney.
        explanation: >-
          Confirms the intended half-dose reduction while reporting the polycystin
          readout as unchanged, which is what the human cell work found altered.

phenotypes:
- category: Renal
  name: Multiple Renal Cysts
  frequency: FREQUENT
  description: >-
    Bilateral kidney cysts, characteristically mild and often non-progressive.
    Their mildness is the diagnostic clue that distinguishes this form.
  phenotype_term:
    preferred_term: Multiple renal cysts
    term:
      id: HP:0005562
      label: Multiple renal cysts
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      The phenotype was mild PKD and variable, including severe, PLD.
    explanation: >-
      Reports polycystic kidney disease as a feature and characterises it as
      mild.
- category: Hepatobiliary
  name: Polycystic Liver Disease
  frequency: FREQUENT
  description: >-
    Variable and sometimes severe hepatic cystic disease. In two of the nine
    reported families the presentation was autosomal dominant polycystic liver
    disease rather than ADPKD.
  phenotype_term:
    preferred_term: Polycystic liver disease
    term:
      id: HP:0006557
      label: Polycystic liver disease
    severity: variable, may be severe
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      a total of 20 affected individuals were identified in seven ADPKD- and two
      ADPLD-affected families
    explanation: >-
      Two of nine families presented as polycystic liver disease, establishing
      the hepatic-dominant presentation.
genetic:
- name: GANAB
  gene_term:
    preferred_term: GANAB
    term:
      id: hgnc:4138
      label: GANAB
  association: CAUSATIVE
  variant_origin: GERMLINE
  features: >-
    Heterozygous loss-of-function variants, six of the eight identified by
    targeted screening being truncating. GANAB was a strong candidate before it
    was proven, because its partner subunit glucosidase II beta is encoded by
    PRKCSH, an established polycystic liver disease gene, so the two halves of
    one enzyme cause overlapping disease.
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Because PRKCSH encodes GIIβ, GANAB is a strong ADPKD and ADPLD candidate
      gene.
    explanation: >-
      States the subunit-partner reasoning that made GANAB a candidate and that
      places this disease alongside the polycystic liver disease genes.
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      a heterozygous pathogenic variant in PKD1, PKD2, or one of the less common
      associated genes (ALG5, ALG9, DNAJB11, GANAB, IFT140)
    explanation: >-
      GeneReviews lists GANAB among the genes whose heterozygous pathogenic
      variants establish an ADPKD diagnosis. Graded OTHER because the sentence is
      a diagnostic-criteria statement in an expert review rather than primary
      human data.
inheritance:
- name: Autosomal dominant
  inheritance_term:
    preferred_term: Autosomal dominant inheritance
    term:
      id: HP:0000006
      label: Autosomal dominant inheritance
  description: >-
    Inherited in an autosomal dominant manner, with heterozygous
    loss-of-function alleles sufficient to impair polycystin-1 maturation. For
    counselling: each child of a carrier has a 50 percent chance of inheriting
    the variant, 10 to 20 percent of affected individuals carry a de novo
    variant, and once the familial variant is known GeneReviews states that
    prenatal and preimplantation genetic testing are available.
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Overall, we show that GANAB mutations cause ADPKD and ADPLD
    explanation: >-
      Establishes GANAB as a cause of two autosomal dominant disorders.
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      Each child of an individual who is heterozygous for an ADPKD-causing
      pathogenic variant has a 50% chance of inheriting the pathogenic variant.
    explanation: >-
      Gives the transmission risk for counselling. Graded OTHER as expert-review
      guidance. Unlike the Clinical Characteristics material this entry
      deliberately excludes, the counselling section names GANAB explicitly and
      its content is not PKD1-specific, so it applies here directly.
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      Most individuals diagnosed with ADPKD have an affected parent; 10%-20% of
      affected individuals have the disorder as the result of a de novo
      pathogenic variant.
    explanation: >-
      Gives the de novo rate, which matters for counselling a carrier with no
      family history. Graded OTHER as expert-review guidance.

prevalence:
- population: Genetically unresolved ADPKD and ADPLD families
  measure_type: CASES_IN_LITERATURE
  prevalence_class: ULTRA_RARE
  notes: >-
    Twenty affected individuals in nine families at the time of gene discovery,
    found by screening 321 genetically unresolved families plus six families
    that had undergone exome sequencing. This is a share of the unresolved remainder, not a
    population rate: 7 to 10 percent of ADPKD families and about half of ADPLD
    families were genetically unresolved before this gene was identified.
  evidence:
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      After screening, 7%-10% of ADPKD-affected and ~50% of ADPLD-affected
      families were genetically unresolved (GUR), suggesting further genetic
      heterogeneity of both disorders.
    explanation: >-
      Gives the size of the unresolved pool this gene was found within, which is
      the denominator the case count should be read against.
diagnosis:
- name: Molecular Genetic Testing
  description: >-
    A GANAB variant is what distinguishes this entry from ADPKD generally, and
    imaging cannot make that call. GeneReviews establishes the ADPKD diagnosis on
    age-specific kidney imaging criteria plus either an affected first-degree
    relative or a heterozygous pathogenic variant, and lists GANAB among the
    less common associated genes that satisfy the molecular arm. Because the
    renal phenotype here is mild and may be atypical in distribution, a patient
    can fail imaging criteria built around the PKD1 picture and still carry the
    diagnosis.
  diagnosis_term:
    preferred_term: Genetic Testing
    term:
      id: NCIT:C15709
      label: Genetic Testing
  evidence:
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      a heterozygous pathogenic variant in PKD1, PKD2, or one of the less common
      associated genes (ALG5, ALG9, DNAJB11, GANAB, IFT140)
    explanation: >-
      Establishes molecular testing including GANAB as a route to the ADPKD
      diagnosis. Graded OTHER because it is a diagnostic-criteria statement in an
      expert review, not primary data.
  - reference: PMID:32405593
    reference_title: Large Deletions in GANAB and SEC63 Explain 2 Cases of Polycystic Kidney and Liver Disease.
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      Because of its 75−base pair read length, WES is not equipped to detect
      large deletions.
    explanation: >-
      Explains why a testing strategy resting on exome sequencing alone will miss
      the large GANAB deletions this paper reports, which is the argument for
      including deletion and duplication analysis in the panel.
  notes: >-
    Modality matters here. Single-gene GANAB testing is a cascade test only,
    because reaching GANAB as a hypothesis already requires PKD1 and PKD2 to have
    been excluded; the primary test is a multigene cystic kidney and liver panel.
    That panel must include deletion and duplication analysis: large GANAB
    deletions are a reported cause, and exome sequencing is structurally poor at
    detecting them because its short reads and PCR-based amplification give
    uneven coverage.

    There is no biochemical test. Glucosidase II activity is not measured
    clinically, so the enzyme defect that defines the disorder is inferred from
    the genotype rather than assayed.
  results: >-
    A heterozygous GANAB loss-of-function variant, or a whole- or partial-gene
    deletion, in a patient in whom PKD1 and PKD2 have been excluded.
- name: Abdominal Imaging of Kidney and Liver
  description: >-
    Imaging carries a different weight here than in PKD1. It must cover the liver
    deliberately rather than incidentally, because hepatic burden may exceed
    renal burden and in some families is the presenting problem. GeneReviews
    recommends abdominal computed tomography or magnetic resonance imaging every
    one to five years in adults depending on disease stage.
  diagnosis_term:
    preferred_term: Magnetic Resonance Imaging
    term:
      id: NCIT:C16809
      label: Magnetic Resonance Imaging
  evidence:
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      CT or MRI examination of the abdomen with and without contrast enhancement
      every one to five years in adults depending on disease stage
    explanation: >-
      States the ADPKD surveillance imaging interval. Graded PARTIAL and OTHER:
      this is an ADPKD-general expert recommendation, not a GANAB-specific one,
      and the stage-dependence it assumes was calibrated on a population in which
      most patients progress faster than GANAB carriers do.
  notes: >-
    Applied here as ADPKD-general management rather than GANAB-specific evidence.
    The interval is deliberately not narrowed for this entry: no GANAB-specific
    surveillance schedule exists, and the mild-course expectation is itself
    contested by a reported severe case.
treatments:
- name: Blood Pressure Control
  therapeutic_modality: SMALL_MOLECULE
  description: >-
    Hypertension management with ACE inhibitors or angiotensin II receptor
    blockers, plus dietary modification, is the ADPKD intervention with the
    broadest applicability and the least dependence on rate of progression, which
    makes it the one that transfers most safely to a GANAB carrier.
  treatment_term:
    preferred_term: Pharmacotherapy
    term:
      id: NCIT:C15986
      label: Pharmacotherapy
  evidence:
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      Treatment for hypertension may include ACE inhibitors or angiotensin II
      receptor blockers and diet modification.
    explanation: >-
      States the ADPKD hypertension recommendation. Graded PARTIAL and OTHER as
      ADPKD-general expert guidance rather than GANAB-specific evidence.
- name: Vasopressin V2 Receptor Antagonism
  therapeutic_modality: SMALL_MOLECULE
  description: >-
    Tolvaptan is approved for rapidly progressive ADPKD, and that eligibility
    criterion is exactly where the GANAB distinction bites. A characteristically
    mild, often non-progressive kidney phenotype is not the population the
    approval describes, so this treatment is curated as conditionally applicable
    rather than indicated, and the condition is the individual patient's
    demonstrated rate of progression rather than the genotype.
  treatment_term:
    preferred_term: Pharmacotherapy
    term:
      id: NCIT:C15986
      label: Pharmacotherapy
    therapeutic_agent:
    - preferred_term: tolvaptan
      term:
        id: CHEBI:32246
        label: tolvaptan
  target_phenotypes:
  - preferred_term: Multiple renal cysts
    term:
      id: HP:0005562
      label: Multiple renal cysts
  evidence:
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      Treatment with vasopressin V2 receptor antagonists (e.g., tolvaptan) to
      slow disease progression is approved for individuals with rapidly
      progressive disease.
    explanation: >-
      States the approved indication, whose restriction to rapidly progressive
      disease is the reason this treatment cannot be assumed to apply here.
      Graded PARTIAL and OTHER: ADPKD-general expert guidance, and no trial has
      enrolled GANAB carriers as such.
  notes: >-
    Curated to record a conditional, not a recommendation. Whether the
    critical-intervention-window logic behind tolvaptan eligibility applies to a
    genotype that rarely progresses is genuinely open, and the reported severe
    GANAB case is precisely the patient in whom the question would arise.
- name: Management of Symptomatic Polycystic Liver Disease
  therapeutic_modality: SURGERY
  description: >-
    The gap this entry most needed to close. Hepatic burden is the part of the
    phenotype that dominates in many GANAB families, and it has its own
    escalation ladder that is largely independent of kidney management. Medical
    measures come first, avoidance of oestrogens plus acid suppression, and
    severe symptoms escalate to percutaneous aspiration and sclerosis,
    laparoscopic fenestration, combined hepatic resection with fenestration,
    selective hepatic artery embolisation, or liver transplantation.
  treatment_term:
    preferred_term: Surgical Procedure
    term:
      id: NCIT:C15329
      label: Surgical Procedure
  target_phenotypes:
  - preferred_term: Polycystic liver disease
    term:
      id: HP:0006557
      label: Polycystic liver disease
  evidence:
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      Symptomatic liver cysts may improve with avoidance of estrogens and the use
      of H2 blockers or proton pump inhibitors. Severe symptoms may require
      percutaneous aspiration and sclerosis, laparoscopic fenestration, combined
      hepatic resection and cyst fenestration, liver transplantation, or
      selective hepatic artery embolization.
    explanation: >-
      States the full medical-to-surgical escalation for symptomatic polycystic
      liver disease. Graded PARTIAL and OTHER as ADPKD-general expert guidance
      rather than GANAB-specific evidence, though it applies with more force here
      than the renal recommendations do, because this is the compartment GANAB
      carriers are most likely to need it in.
- name: Avoidance of Nephrotoxic and Cyst-Aggravating Exposures
  therapeutic_modality: BEHAVIORAL
  description: >-
    GeneReviews names specific agents and circumstances to avoid. One of them is
    directly relevant to this entry's phenotype emphasis: oestrogens, and
    possibly progestogens, should be avoided in individuals with severe
    polycystic liver disease, which is the presentation GANAB carriers are most
    likely to reach.
  treatment_term:
    preferred_term: Supportive Care
    term:
      id: NCIT:C15747
      label: Supportive Care
  evidence:
  - reference: PMID:20301424
    reference_title: "Polycystic Kidney Disease, Autosomal Dominant."
    supports: SUPPORT
    evidence_source: OTHER
    snippet: >-
      Agents/circumstances to avoid: Long-term administration of nephrotoxic
      agents, high levels of caffeine, high-salt diet, smoking, and obesity, and
      in individuals with severe PLD, use of estrogens and possibly progestogens.
    explanation: >-
      The GeneReviews agents-to-avoid list, including the oestrogen caution that
      is specific to severe polycystic liver disease. Graded PARTIAL and OTHER as
      ADPKD-general expert guidance.

discussions:
- discussion_id: pkd3_mouse_contradicts_human_pc1_defect
  kind: HUMAN_MODEL_MISMATCH
  status: OPEN
  prompt: >-
    Why does polycystin-1 remain unaffected in the Ganab heterozygous mouse
    kidney when it is reduced in human GANAB heterozygous cells, and which result
    describes the patient?
  attaches_to:
  - pathophysiology#Impaired Polycystin-1 Maturation and Trafficking
  - animal_models#Ganab heterozygous knockout mouse
  rationale: >-
    The two experiments disagree on the readout that the whole mechanism rests
    on. Human GANAB(+/-) cells show reduced mature polycystin-1, and that is the
    evidence connecting the gene to cystogenesis. The mouse heterozygote achieves
    the intended halving of Ganab protein and reports polycystin-1 and
    polycystin-2 expression unaffected, with no cysts anywhere. The mouse authors
    draw the strong conclusion, that Ganab may not be causative at all.

    Several things could reconcile them and none has been tested. The human work
    measured mature glycoform specifically while the mouse measured expression,
    which are different quantities. Mouse cyst models across the ADPKD genes
    generally need a second hit or prolonged time, so an unstressed young
    heterozygote may simply be below threshold. Species differences in
    glucosidase II dependence are plausible given that the human phenotype is
    itself mild. Until this is resolved, the entry's central mechanism rests on
    human cell work and human genetics, with the only whole-animal test of it
    returning negative, and that should be visible rather than smoothed over.
  evidence:
  - reference: PMID:32550232
    reference_title: Ganab Haploinsufficiency Does Not Cause Polycystic Kidney Disease or Polycystic Liver Disease in Mice.
    supports: REFUTE
    evidence_source: MODEL_ORGANISM
    snippet: >-
      Homozygous Ganab mutations are lethal in the fetal stage, and Ganab
      haploinsufficiency does not cause kidney or liver cysts in mice, suggesting
      that it may not be the causative gene in polycystic kidney disease.
    explanation: >-
      The mouse study's own conclusion, which challenges the gene-disease claim
      rather than merely failing to confirm it.
  - reference: PMID:27259053
    reference_title: "Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease."
    supports: SUPPORT
    evidence_source: IN_VITRO
    snippet: >-
      reduced mature PC1 was seen in GANAB(+/-) cells
    explanation: >-
      The human heterozygous-cell result the mouse kidney contradicts.
- discussion_id: pkd3_mildness_is_modal_not_guaranteed
  kind: KNOWLEDGE_GAP
  status: OPEN
  prompt: >-
    What determines whether a GANAB carrier follows the expected mild renal
    course or progresses rapidly?
  attaches_to:
  - pathophysiology#Renal Cystogenesis
  - phenotypes#Multiple Renal Cysts
  rationale: >-
    Mild kidney disease is the characterisation from the discovery cohort and is
    the basis on which a GANAB result would reassure a patient. But a reported
    18-year-old carrier fell into Mayo imaging class 1E, the class predicting
    rapid progression to end-stage renal disease, and the report was written
    specifically to question the mildness assumption. With around twenty
    published carriers there is no basis for a modifier analysis, and no
    genotype-phenotype rule separates the two courses. The clinical consequence
    is concrete: mildness governs surveillance intervals and whether
    disease-modifying therapy is considered at all, and a counselling message
    built on the cohort description will occasionally be wrong.
  evidence:
  - reference: PMID:40134995
    reference_title: "GANAB-Associated Severe Autosomal Dominant Polycystic Kidney Disease in an 18-Year-Old Female: A Case Report."
    supports: SUPPORT
    evidence_source: HUMAN_CLINICAL
    snippet: >-
      The GANAB gene mutation found in this patient is typically associated with
      mild kidney disease; however, according to the Mayo Clinic Imaging
      Classification (MIC) for ADPKD, our patient falls under Classification 1E,
      which is predictive of rapid progression to end-stage renal disease (ESRD).
    explanation: >-
      Documents a carrier at the severe end and states the challenge to the
      mildness assumption explicitly.
- discussion_id: pkd3_intracranial_aneurysm_risk_unknown
  kind: KNOWLEDGE_GAP
  status: OPEN
  prompt: >-
    Do GANAB carriers carry the ADPKD-associated intracranial aneurysm risk?
  attaches_to:
  - phenotypes#
  rationale: >-
    Intracranial aneurysm is a cardinal extrarenal feature of ADPKD, occurring at
    roughly fivefold the general-population rate, and its presence or absence
    drives whether a patient is offered magnetic resonance angiography screening.
    No GANAB-specific report in the reference cache addresses it either way. This
    entry deliberately does not import it from the ADPKD-general GeneReviews
    chapter, because that chapter describes the PKD1-dominated picture and
    importing it would manufacture a GANAB phenotype from a statement about a
    different genotype. Equally, absence of evidence in twenty published carriers
    is not evidence of absence, and a curator reading this entry should not
    conclude the risk is zero.
📚

References & Deep Research

References

2
Polycystic Kidney Disease, Autosomal Dominant.
No top-level findings curated for this source.
Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease.
No top-level findings curated for this source.

Deep Research

1
Claude Code
1. Disease Information
claude-haiku-4-5-20251001, claude-opus-5[1m] 23 citations 2026-08-29T00:32:55.718704

1. Disease Information

Overview

PKD3 is an autosomal dominant cystic disease of the kidney and liver caused by heterozygous loss-of-function or hypomorphic variants in GANAB, which encodes the α subunit of glucosidase II (GIIα), a heterodimeric endoplasmic reticulum enzyme that trims glucose residues from N-linked glycans during glycoprotein quality control. GIIα is required for the maturation, surface delivery, and ciliary localization of polycystin-1 (PC1). PKD3 is therefore not a polycystin gene disease but a polycystin-biogenesis disease: the cystogenic endpoint is the same as classical ADPKD, reached one step upstream.

The clinical presentation is bimodal and, within families, highly variable:

  • a mild polycystic kidney phenotype — few large cysts, preserved kidney function into late life, kidney failure rare or absent — often with liver cysts; or
  • a severe isolated polycystic liver disease (ADPLD) phenotype with few or no kidney cysts, occasionally requiring liver transplantation.

The same allele can produce either. Delbarba et al. reported a family in which the p.Arg839Trp variant caused mild ADPKD, while the same variant had previously been reported in a patient with ADPLD severe enough to require liver transplant (PMID:34357571).

Key identifiers

Resource Identifier
MONDO MONDO:0010916 — polycystic kidney disease 3 with or without polycystic liver disease ✅ verified in repo cache
OMIM (phenotype) 600666 — POLYCYSTIC KIDNEY DISEASE 3 WITH OR WITHOUT POLYCYSTIC LIVER DISEASE; PKD3
OMIM (gene) 104160 — GLUCOSIDASE, ALPHA, NEUTRAL AB; GANAB
HGNC hgnc:4138 (GANAB) ✅ verified via genenames.org REST
UniProt Q14697 (GANAB_HUMAN, neutral α-glucosidase AB)
NCBI Gene / Ensembl 23193 / ENSG00000089597
RefSeq (canonical) NM_198334
Cytoband 11q12.3
MeSH D016891 Polycystic Kidney, Autosomal Dominant (no PKD3-specific MeSH term exists)
ICD-10 Q61.2 Polycystic kidney, autosomal dominant (no gene-specific code)
ICD-11 GB81.0 Autosomal dominant polycystic kidney disease — ⚠️ verify in the current ICD-11 browser before binding
Orphanet No dedicated ORPHA code for GANAB-ADPKD was found. Nearest: ORPHA:730 (ADPKD), ORPHA:2924 (isolated polycystic liver disease). ⚠️ verify

Synonyms and alternative names

  • ADPKD-GANAB (the preferred contemporary designation; Cornec-Le Gall et al. 2018)
  • GANAB-related autosomal dominant polycystic kidney disease
  • Polycystic kidney disease 3 with or without polycystic liver disease
  • PKD3
  • GANAB-related polycystic liver disease
  • Glucosidase IIα-deficiency polycystic disease (descriptive, not standard)

⚠️ Do not list "polycystic kidney disease, type III (unmapped locus)" as a synonym without the historical caveat above.

Nature of the evidence base

Entirely aggregated disease-level and case-level literature. There is no EHR-derived cohort, no registry, and no natural-history study specific to GANAB. The total published experience is on the order of ~30–40 families worldwide. The evidence base is:

  • one gene-discovery study with functional validation (Porath 2016, n = 20 affected individuals / 9 families)
  • one ADPLD gene-discovery study (Besse 2017)
  • one targeted cohort screen (van de Laarschot 2020, 625 patients)
  • a scattering of single-family and single-case reports
  • one population-sequencing prevalence estimate (Lanktree 2018)

Every quantitative claim below should be read against that denominator.


2. Etiology

Primary cause

Heterozygous germline variants in GANAB. The mechanism is haploinsufficiency / partial loss of glucosidase IIα function, with a probable requirement for a somatic or stochastic second hit at the tissue level (the standard ADPKD two-hit / dosage-threshold framework).

"Whole-exome sequencing of six GUR ADPKD-affected families identified one with a missense mutation in GANAB, encoding glucosidase II subunit α (GIIα). Because PRKCSH encodes GIIβ, GANAB is a strong ADPKD and ADPLD candidate gene." — Porath et al., Am J Hum Genet 2016;98:1193–1207. PMID:27259053, doi:10.1016/j.ajhg.2016.05.004

The candidate-gene logic is worth capturing in the entry: PRKCSH, the long-established isolated-PCLD gene (PCLD1, OMIM 174050), encodes the β subunit of the very same glucosidase II heterodimer. GANAB was pursued because its partner was already a cystic-disease gene.

Genetic risk factors

  • Causal variants: heterozygous GANAB truncating (nonsense, frameshift, canonical splice) and hypomorphic missense variants. See §4.
  • Trans-heterozygous / oligogenic modification: the strongest recurring theme in the ADPKD-spectrum literature. Cornec-Le Gall et al. state:

    "Recent data have shown that biallelic disease including at least one weak ADPKD allele is a significant cause of symptomatic, very early onset ADPKD." — J Am Soc Nephrol 2018;29:13–23. PMID:29038287, doi:10.1681/ASN.2017050483

A worked instance: a 12-year-old girl with bilateral renal cysts and nephrolithiasis carrying a GANAB nonsense variant (c.181C>T, p.Arg61) and a PKD1 VUS (c.182C>T, p.Pro61Leu) — reported as the first pediatric case combining PKD1 and GANAB variants (PMC6375066). - Modifier loci: unidentified for GANAB specifically. Lanktree et al. found substantial rare variation in candidate cyst-modifier genes at population scale (see §9), but no GANAB-specific modifier has been mapped. - Sex: female sex is a well-established risk factor for severe liver cystic disease* across all PLD genes (see §9); whether it modifies the kidney phenotype in GANAB carriers is unknown.

Environmental risk factors

No GANAB-specific environmental risk factor has been identified. Extrapolating from the ADPKD literature (label these clearly as ADPKD-general if used):

  • Estrogen exposure (endogenous, pregnancy, exogenous HRT/oral contraceptives) — accelerates hepatic cystogenesis; the standard clinical advice is estrogen avoidance in symptomatic PLD.
  • High dietary sodium, low water intake / high circulating vasopressin — associated with faster kidney disease progression in ADPKD.
  • Smoking, caffeine, obesity — variably reported ADPKD progression associations, none established for GANAB.

Protective factors

  • Genetic: none identified. There is no reported protective allele or modifier.
  • Environmental: none GANAB-specific. High water intake (vasopressin suppression) and salt restriction are plausible-by-mechanism but unproven in ADPKD generally and untested in GANAB.

Gene–environment interaction

No data. ⚠️ Not available for this disease. The mechanistically obvious hypothesis — that vasopressin/cAMP tone modulates the penetrance of a partial polycystin-1 deficit — is untested in GANAB carriers and should be recorded as a KNOWLEDGE_GAP discussion rather than asserted.


3. Phenotypes

Kidney phenotypes

Phenotype HPO lead ⚠️ Frequency / severity Onset Course
Multiple bilateral renal cysts HP:0005562 Multiple renal cysts Near-universal in ADPKD-presenting families; few, large cysts rather than innumerable small ones Adult; some childhood cases Slowly progressive
Renal cyst HP:0000107 Renal cyst
Polycystic kidney dysplasia HP:0000113 Atypical / Mayo class 2 morphology common for minor ADPKD genes Adult
Hypertension HP:0000822 ~40% of families in Porath 2016; onset typically 35–55 y Adult Chronic
Renal insufficiency HP:0000083 Uncommon — the defining feature of the genotype Late, if at all Slow
Stage 5 CKD / kidney failure HP:0003774 Not reported in the Porath cohort; ESKD is the exception, not the rule Late
Hematuria HP:0000790 Reported (Delbarba family) Adult Episodic
Nephrolithiasis HP:0000787 Reported in individual cases Variable Episodic
Flank / abdominal pain HP:0030157 / HP:0002027 ⚠️ Reported Adult Episodic

The kidney phenotype is the single most consistent descriptive claim in the literature:

"The phenotype was mild PKD and variable, including severe, PLD." — Porath et al. 2016, PMID:27259053

GANAB pathogenic variants cause "mild cystic kidney disease, usually without a decline in kidney function, with the majority of affected individuals having liver cysts." — GeneReviews, Polycystic Kidney Disease, Autosomal Dominant (NBK1246)

⚠️ The mildness claim is now formally contested. A 2025 case report describes an 18-year-old with a GANAB variant and Mayo Imaging Classification 1E — the highest-risk imaging class:

"The GANAB gene mutation found in this patient is typically associated with mild kidney disease; however, according to the Mayo Clinic Imaging Classification (MIC) for ADPKD, our patient falls under Classification 1E, which is predictive of rapid progression to end-stage renal disease (ESRD)... This case questions the assumption that GANAB-associated ADPKD progresses in a mild manner." — Agrawal G, Agarwal B, Chandrasekhara Pillai A, Kuriakose K. Cureus 2025;17(2):e79498. PMID:40134995, doi:10.7759/cureus.79498

This is a good candidate for a discussions entry with kind: KNOWLEDGE_GAP attached to the progression/prognosis section, since n = 1 does not overturn a cohort but does bound the confidence.

Liver phenotypes

Phenotype HPO lead ⚠️ Notes
Hepatic cysts HP:0001407 The dominant phenotype in the ADPLD-presenting families; ranges from absent → few → massive
Hepatomegaly HP:0002240 Secondary to cyst burden
Abdominal distension / mass effect HP:0003270 ⚠️ Drives most of the symptom burden in severe PLD
Hepatic failure HP:0001399 Rare; PLD is a mass/volume disease, not a synthetic-function disease

Severity spans the full range: some carriers have no cysts, others require liver resection or transplantation (Porath 2016; Delbarba 2022 cites a prior p.Arg839Trp carrier who was transplanted).

Extrarenal / vascular phenotypes

⚠️ Weakly supported for GANAB specifically. Intracranial aneurysm is a canonical ADPKD extrarenal feature but was observed in only one GANAB family (M641) in the discovery cohort; the association is not established for the gene. Aortic root dilatation was reported in the Delbarba proband.

Phenotype HPO lead ⚠️ Evidence status for GANAB
Intracranial aneurysm / cerebral artery dilatation HP:0004944 ⚠️ verify Single family — do not assert as a GANAB feature
Aortic root aneurysm HP:0002616 Single case report (Delbarba 2022)
Mitral valve prolapse HP:0001634 ADPKD-general; no GANAB data
Pancreatic cysts HP:0001737 ADPKD-general; no GANAB data

Laboratory abnormalities

No GANAB-specific biochemical signature. Standard ADPKD labs apply: serum creatinine/eGFR (LOINC 33914-3 eGFR; 2160-0 creatinine), urinalysis for hematuria, and liver enzymes (typically normal or mildly cholestatic in PLD — GGT and ALP may rise with large cyst burden). There is no clinically deployed glucosidase II activity assay for diagnosis.

Quality-of-life impact

⚠️ No GANAB-specific QoL data exist. No EQ-5D, SF-36, PROMIS, or disease-specific (e.g. ADPKD-IS, PLD-Q) instrument has been applied to a GANAB cohort. From the PLD literature generally:

"Liver cysts arise in patients with autosomal dominant PLD (ADPLD) or in co-occurrence with renal cysts... which constitute the main cause of morbidity and markedly affect the quality of life." — Olaizola P, Rodrigues PM, Caballero-Camino FJ, et al. Nat Rev Gastroenterol Hepatol 2022;19(9):585–604. PMID:35562534, doi:10.1038/s41575-022-00617-7

Because kidney function is typically preserved, the QoL burden in GANAB disease is predominantly hepatic mass effect — early satiety, abdominal distension, pain, dyspnea, malnutrition — rather than the dialysis-trajectory burden that dominates PKD1. This is a genuine, curatable difference from Polycystic_Kidney_Disease_2 and from Autosomal_Dominant_Polycystic_Kidney_Disease.


4. Genetic / Molecular Information

Causal gene

GANAB (hgnc:4138), glucosidase II alpha subunit, 11q12.3, OMIM 104160, UniProt Q14697, NM_198334. Aliases: GluII, G2AN, KIAA0088, GIIA, GIIalpha. Previous symbol: glucosidase, alpha; neutral AB.

Pathogenic variants

Variants reported in Porath et al. 2016 (⚠️ extracted from full text via automated retrieval — re-verify each variant against Table 1 of the paper before entering into the KB):

Family cDNA Protein Type Family phenotype
M263 c.1265G>T p.Arg422Leu Missense ADPKD + severe PLD
M641 c.1914_1915delAG p.Asp640Glnfs*77 Frameshift ADPKD, variable PLD
290100 c.1914_1915delAG p.Asp640Glnfs*77 Frameshift ADPKD, variable PLD
P1174 c.1214C>G p.Thr405Arg Missense ADPKD, mild PLD
M656 c.2690+2_+7del splice Splice ADPKD, mild PLD
PK20016 c.39−1G>C splice Splice ADPKD + PLD
PK20017 c.2176C>T p.Arg726* Nonsense ADPKD + PLD
P1073 c.2515C>T p.Arg839Trp Missense ADPLD (severe)
M472 c.152_153delGA p.Arg51Lysfs*21 Frameshift ADPLD (severe)

Nine variants, six truncating — consistent with loss of function as the mechanism.

Variants reported in van de Laarschot et al. 2020 (Orphanet J Rare Dis 2020;15:302, doi:10.1186/s13023-020-01585-4, PMC7585303):

cDNA Protein Type
c.687delT p.Asp229Glufs*60 Frameshift
c.11_16delTAGCGG p.Val4_Ala5del In-frame deletion
c.1835G>C p.Arg612Pro Missense
c.2002+1G>C Splice
c.2509C>T p.Arg837* Nonsense
c.2656C>T p.Arg886* Nonsense

In-silico interpretation from that paper: p.Arg612Pro "was predicted to disrupt the structure of the active site of the protein"; the truncating variants are "predicted to cause abnormal binding of α- and β-subunits of glucosidase II, thus affecting its enzymatic activity."

Structural variants. Large GANAB deletions are a real and under-ascertained class — sequence-only panels will miss them:

Wilson EM, Choi J, Torres VE, Somlo S, Besse W. Large Deletions in GANAB and SEC63 Explain 2 Cases of Polycystic Kidney and Liver Disease. Kidney Int Rep 2020;5(5):727–731. PMID:32405593, doi:10.1016/j.ekir.2020.01.009

Non-coding variants. At least one deep-intronic/non-coding GANAB variant has been reported to explain isolated PCLD in a large family (PMC5805583) — relevant to the diagnostic-yield discussion in §10.

⚠️ Note the discrepancy for curators: GeneReviews states no GANAB deletions/duplications had been documented, but Wilson et al. 2020 reported exactly that. Cite the primary paper, not the summary table.

Variant classification, origin, and functional consequence

  • Classification (ACMG/AMP): truncating variants are classified pathogenic on PVS1 grounds — ClinVar records e.g. NM_198334.3(GANAB):c.490C>T (p.Arg164*) as pathogenic, "loss-of-function is an established mechanism of disease for this gene." Missense variants require functional support (see the rescue assay in §6) and many remain VUS.
  • Origin: germline, heterozygous, autosomal dominant. No somatic-origin disease is described. Somatic second hits in cyst epithelium are presumed by analogy to PKD1/PKD2 but ⚠️ have not been demonstrated for GANAB.
  • Functional consequence: loss of function / partial loss of function. Use functional_impact_category: LOSS_OF_FUNCTION on the GeneticContext, and modifier: DECREASED (not LOSS_OF_FUNCTION) on downstream GO-bound activity nodes unless a qualitative regulatory-escape claim is being made — the CLAUDE.md INCREASED/GAIN_OF_FUNCTION discipline applies here.
  • Allele frequency: individual pathogenic variants are absent or ultra-rare in gnomAD. ⚠️ Specific gnomAD constraint metrics (pLI, LOEUF, o/e) for GANAB were not retrievable in this session — look them up directly at gnomad.broadinstitute.org before citing any constraint number. Note the mouse data (§15) showing homozygous lethality, which predicts strong constraint.

Modifier genes

None mapped for GANAB. The generic ADPKD-spectrum modifier framework applies: Lanktree et al. found "truncating mutations in ADPLD genes and genes of potential relevance as cyst modifiers were found in 20.2 cases and 103.9 cases per 10,000 sequenced, respectively" (PMID:30135240).

Epigenetics

⚠️ No GANAB-specific epigenetic data. No methylation, histone, or chromatin study has been performed on GANAB-related disease. (Epigenetic dysregulation — HDAC, bromodomain, miRNA — is an active theme in ADPKD generally, but nothing is GANAB-specific.) Record as a knowledge gap; do not import ADPKD-general epigenetics as PKD3 content.

Chromosomal abnormalities

None associated. GANAB disease is a single-gene, small-variant + intragenic-deletion disorder. No aneuploidy, translocation, or contiguous-gene syndrome involving 11q12.3 has been linked to PKD3.


5. Environmental Information

  • Environmental factors: ⚠️ None identified. No toxin, radiation, pollutant, or occupational exposure is associated with PKD3. CTD/TOXNET searching yields no GANAB-disease exposure link.
  • Lifestyle factors: No GANAB-specific data. If any environmental: block is curated, the estrogen-avoidance and vasopressin/water-intake items must be labelled as ADPKD/PLD-general extrapolation, with environmental_effect chosen conservatively (MODULATES, not TRIGGERS).
  • Infectious agents: ⚠️ Not applicable. No infectious etiology or trigger.

Given the repo's check-environmental-evidence gate, the honest curation here is either an empty environmental: section or an entry carrying the review_notes: "Left deliberately uncited." waiver with the searches recorded — not a manufactured citation.


6. Mechanism / Pathophysiology

This is the section with the strongest, best-cited content, and the reason PKD3 deserves its own entry.

The causal chain

GANAB heterozygous LoF variant
  → reduced glucosidase IIα (GIIα) protein/activity in the ER
  → failure to trim glucose from N-glycans on nascent PC1
  → PC1 fails to complete GPS autoproteolytic cleavage / maturation; retained in ER
  → loss of mature PC1 glycoform; PC1 does not reach plasma membrane or cilium
  → PC2 ciliary localization lost (PC1-dependent trafficking)
  → loss of ciliary polycystin complex signalling
  → ↑ intracellular cAMP, ↑ epithelial proliferation, ↑ transepithelial Cl⁻/fluid secretion
  → focal tubular and biliary cyst initiation, cyst detachment, expansion
  → cystic kidney and liver disease

Upstream — ER glycoprotein quality control (the GANAB-specific step)

Glucosidase II is an ER heterodimer: GIIα (GANAB) is catalytic, GIIβ (PRKCSH/hepatocystin) is the regulatory/ER-retention subunit. Together they perform the second glucose-trimming step of N-glycan processing, gating entry into and exit from the calnexin/calreticulin folding cycle. Both subunits are cystic-disease genes — which is the structural argument that hepatic and renal cystogenesis run through a common protein-biogenesis bottleneck.

Besse et al. generalized this to a pathway-level model:

"Similarly to PRKCSH and SEC63, these genes encode proteins that are integral to the protein biogenesis pathway in the endoplasmic reticulum. We inactivated these candidate genes in cell line models to show that loss of function of each results in defective maturation and trafficking of polycystin-1, the central determinant of cyst pathogenesis. Despite acting in a common pathway, each PCLD gene product demonstrated distinct effects on polycystin-1 biogenesis." — Besse W, Dong K, Choi J, et al. Isolated polycystic liver disease genes define effectors of polycystin-1 function. J Clin Invest 2017;127(5):1772–1785. PMID:28375157, doi:10.1172/JCI90129

That last clause matters for curation: ALG8, GANAB, SEC61B, PRKCSH, and SEC63 are not interchangeable in their effect on PC1 — they converge on the same node by different routes. This is a strong candidate for a shared mechanism module in kb/modules/ (see the curation note at the end).

Core functional evidence (Porath 2016, in vitro)

"Analysis of GANAB-null cells showed an absolute requirement of GIIα for maturation and surface and ciliary localization of the ADPKD proteins (PC1 and PC2), and reduced mature PC1 was seen in GANAB(+/-) cells. PC1 surface localization in GANAB(-/-) cells was rescued by wild-type, but not mutant, GIIα. Overall, we show that GANAB mutations cause ADPKD and ADPLD and that the cystogenesis is most likely driven by defects in PC1 maturation." — Porath et al. 2016, PMID:27259053

Additional detail from the full text (⚠️ automated extraction — verify before quoting as snippet):

  • GANAB-null cells: complete loss of the mature PC1 glycoform (PC1-NTR); full-length and immature PC1 accumulate; ciliary PC2 completely absent despite normal cilium formation; minimal effect on control glycoproteins (EGFR, E-cadherin) — i.e. the defect is selective for PC1, not a global glycosylation collapse.
  • GANAB^+/− cells: ~50% reduction in PC1-NTR — gene-dosage-proportional, which is the cell-biological basis for haploinsufficiency as the human mechanism.
  • Rescue: wild-type FLAG-GIIα restored PC1 surface localization; the disease missense variants p.Thr405Arg, p.Arg422Leu, p.Arg839Trp failed to rescue, while presumed-neutral variants did. This is a functional assay usable for ACMG PS3-level evidence.

Curation note on evidence_source: all of the above is IN_VITRO, not HUMAN_CLINICAL. The Porath abstract mixes human genetic and cell-biology claims in one paragraph — per CLAUDE.md, split the evidence items so each carries a single evidence_source.

Downstream — shared ADPKD cystogenic machinery

Once mature PC1 is lost, the mechanism is the canonical polycystin pathway already curated in Autosomal_Dominant_Polycystic_Kidney_Disease and Polycystic_Kidney_Disease_2: loss of the ciliary polycystin-1/polycystin-2 receptor-channel complex → derepression of adenylyl cyclase → ↑cAMP → PKA-driven proliferation (B-Raf/MEK/ERK) and CFTR-mediated transepithelial chloride and fluid secretion → mTOR activation, Wnt/planar-cell-polarity disturbance, and a metabolic shift toward aerobic glycolysis in cyst epithelium. This is conforms_to territory — reuse the existing nodes rather than re-deriving them, and cite the shared literature at the ADPKD entry.

Cellular processes, cell types, protein dysfunction

  • Protein dysfunction: loss of enzymatic function (GIIα) → trans-acting maturation failure of a client glycoprotein (PC1). Note this is not misfolding or aggregation of the mutant protein itself; the disease protein is an enzyme whose absence strands a client. That distinction is worth stating explicitly in the entry's description, because it is what separates PKD3's molecular node from PKD1/PKD2.
  • Cellular processes: ER protein quality control; N-linked glycan processing; ER-to-Golgi trafficking; ciliogenesis-independent ciliary cargo delivery; epithelial proliferation; transepithelial anion secretion.
  • Metabolic changes: ⚠️ No GANAB-specific metabolomic data. The Warburg-like shift described in ADPKD cyst epithelium has not been demonstrated in GANAB disease.
  • Immune involvement: ⚠️ None specific. Macrophage-driven interstitial inflammation is described in advanced ADPKD; no GANAB data.
  • Tissue damage: cyst mass effect, compression of adjacent parenchyma, secondary interstitial fibrosis. Given preserved kidney function in most carriers, the fibrotic burden appears low — but this has not been formally studied.

Ontology term leads for the mechanism section

⚠️ All CURIEs below are leads. Run just validate-terms before binding any of them; per the dismech-terms rule, "no term beats a bad one."

GO — biological process | Concept | Lead CURIE | |---|---| | protein N-linked glycosylation | GO:0006487 | | protein folding in endoplasmic reticulum | GO:0034975 ⚠️ | | protein folding | GO:0006457 | | response to endoplasmic reticulum stress | GO:0034976 | | ERAD pathway | GO:0036503 | | protein localization to plasma membrane | GO:0072659 | | protein localization to cilium | GO:0061512 ⚠️ | | cilium assembly | GO:0060271 | | transepithelial chloride transport | GO:0030321 ⚠️ | | cAMP biosynthetic process | GO:0006171 ⚠️ | | positive regulation of cell population proliferation | GO:0008284 | | kidney development | GO:0001822 |

GO — molecular function / cellular component | Concept | Lead CURIE | |---|---| | glucosidase II complex | GO:0017177 ⚠️ | | endoplasmic reticulum lumen | GO:0005788 | | endoplasmic reticulum membrane | GO:0005789 | | ciliary membrane | GO:0060170 | | cilium | GO:0005929 | | α-glucosidase activity | ⚠️ unresolved — GANAB's EC is 3.2.1.207; confirm the exact GO MF term via OAK rather than guessing |

CL — cell types | Concept | Lead CURIE | |---|---| | kidney epithelial cell | CL:0002518 | | epithelial cell of proximal tubule | CL:0002306 | | kidney collecting duct principal cell | CL:1001431 ⚠️ | | cholangiocyte | CL:1000488 ⚠️ |

Molecular profiling and advanced technologies

⚠️ Essentially all absent for PKD3. Recording this honestly is more useful than importing ADPKD-general data:

  • Transcriptomics: no GANAB-specific GEO/ArrayExpress dataset identified.
  • Proteomics: none GANAB-specific.
  • Metabolomics / lipidomics: none.
  • Single-cell / spatial transcriptomics: none. (Human kidney and liver single-cell atlases exist and would establish GANAB expression by cell type, but no GANAB-disease scRNA-seq has been published.)
  • Functional genomics screens: GANAB appears in DepMap and genome-wide CRISPR screens as a general-essentiality/glycosylation gene, but not in a PKD-disease-model screen.

Datasets caution: per CLAUDE.md's Named Entity Confusion warning (§2b), searching GEO for "GANAB" will surface cancer and glycosylation datasets that have nothing to do with polycystic disease. Any datasets: block here needs manual DIRECT/GENE_ONLY triage and just verify-datasets.


7. Anatomical Structures Affected

Organ level

Level Structure UBERON lead ⚠️ Notes
Primary Kidney UBERON:0002113 Bilateral, typically asymmetric/atypical (Mayo class 2) morphology
Primary Liver UBERON:0002107 Often the dominant organ; can be the only affected organ
Secondary Biliary tree / intrahepatic bile ducts UBERON:0002394 ⚠️ Cysts derive from biliary epithelium (peribiliary glands / von Meyenburg complexes)
Possible Cerebral arteries ⚠️ verify Intracranial aneurysm in one family only
Possible Aorta / aortic root UBERON:0001496 ⚠️ Single case (Delbarba 2022)
ADPKD-general only Pancreas UBERON:0001264 No GANAB data
ADPKD-general only Cardiac valves UBERON:0002135 (mitral valve) No GANAB data

Body systems: renal/urinary and hepatobiliary primarily; cardiovascular possibly.

Tissue and cell level

  • Tissue type: simple/cuboidal epithelium — renal tubular epithelium (distal nephron and collecting duct predominate in ADPKD) and intrahepatic biliary epithelium.
  • Cell populations: kidney tubular epithelial cells (CL:0002518), collecting-duct principal cells (CL:1001431 ⚠️), cholangiocytes (CL:1000488 ⚠️).
  • ⚠️ No histopathology series exists for GANAB-related disease specifically. Cyst lining morphology is presumed identical to classical ADPKD/PLD but has not been separately characterized.

Subcellular level

This is the diagnostic subcellular signature of PKD3 and should be curated explicitly:

  • Endoplasmic reticulum (GO:0005783), specifically ER lumen (GO:0005788) and ER membrane (GO:0005789) — the site of GIIα action and of the PC1 maturation block.
  • Glucosidase II complex (GO:0017177 ⚠️).
  • Primary cilium (GO:0005929) and ciliary membrane (GO:0060170) — the compartment PC1/PC2 fail to reach.
  • Plasma membrane (GO:0005886) — reduced mature PC1 at the surface.

Localization and lateralization

Bilateral kidney involvement, but characteristically asymmetric and with a small number of large cysts rather than the diffuse symmetric enlargement of PKD1 — the "atypical" / Mayo class 2 pattern that the minor-ADPKD-gene literature emphasizes. Liver cysts are diffusely distributed through both lobes.


8. Temporal Development

Onset

  • Typical onset: adult, and often late-onset. Delbarba et al. explicitly title their report "late-onset ADPKD" and describe diagnosis at 45 years incidentally, during screening for hernia repair, with elderly parents who had bilateral cystic kidneys and normal kidney function (PMID:34357571).
  • Pattern: insidious, frequently incidental discovery on imaging performed for another indication.
  • Pediatric/adolescent onset is reported but exceptional — the 18-year-old with MIC 1E disease (Cureus 2025) and the 12-year-old with a GANAB + PKD1 pair (PMC6375066). In the latter case a second locus is the likely explanation.
  • Liver cysts in PLD generally are "undetectable early in life and usually appear after the age of 40 years" (Orphanet, isolated PCLD, ORPHA:2924) — consistent with the GANAB series.

Progression

  • Kidney: slow or non-progressive. Kidney function is typically preserved; no ESKD was reported in the Porath discovery cohort. For the ADPKD-spectrum minor genes generally, the pattern is "a smaller number of cysts and less kidney enlargement than with PKD1 and PKD2 mutations, asymmetric distribution of cysts, and a slower decline in kidney function."
  • Liver: progressive and the main driver of morbidity in the liver-dominant subset; can reach transplant-requiring severity.
  • Course: chronic, lifelong, progressive-but-slow. Not episodic or relapsing-remitting. Symptom episodes (pain, hematuria, cyst infection/hemorrhage) punctuate an otherwise indolent course.
  • Duration: lifelong.

Staging

⚠️ No PKD3-specific staging system. Two ADPKD-general instruments are applied and are directly relevant:

  • Mayo Imaging Classification (MIC) — htTKV-and-age-based classification into class 1A–1E (typical) and class 2 (atypical). GANAB carriers are expected to fall in class 2 (atypical morphology); the 2025 Cureus case is notable precisely because the patient was 1E.
  • CKD stage (KDIGO G1–G5) for kidney function.
  • Gigot / Schnelldorfer classification for polycystic liver severity.

Critical periods and remission

  • No spontaneous or treatment-induced remission. Cysts do not regress; surgical/interventional treatment debulks rather than cures.
  • Critical intervention window (ADPKD-general, unproven in GANAB): disease-modifying therapy is most valuable early, while eGFR and kidney volume are still preserved — which is exactly why tolvaptan eligibility is tied to MIC class and eGFR ≥25 (§12). Whether that window concept applies to a genotype that rarely progresses is an open question and a good KNOWLEDGE_GAP.

9. Inheritance and Population

Inheritance

  • Pattern: autosomal dominant (HP:0000006). All reported disease is heterozygous.
  • Penetrance: incomplete and age-dependent — strongly so. Lanktree et al.'s population-sequencing finding is the key evidence:

    "Loss-of-function mutations in ADPLD genes are also more common than expected, suggesting the possibility of unrecognized cases and incomplete penetrance." — Lanktree MB, Haghighi A, Guiard E, Iliuta IA, Song X, Harris PC, Paterson AD, Pei Y. J Am Soc Nephrol 2018;29(10):2593–2600. PMID:30135240, doi:10.1681/ASN.2018050493

  • Expressivity: highly variable, both between and within families — the single most reproducible clinical statement about GANAB.

    "The evidence that the GANAB variant may cause both ADPKD and ADPLD of variable severity supports that renal and hepatic cystogenesis are the result of a common defective polycystin-1 pathway." — Delbarba E, Econimo L, Dordoni C, et al. J Nephrol 2022;35(2):645–652. PMID:34357571, doi:10.1007/s40620-021-01131-w

  • Genetic anticipation: not applicable — not a repeat-expansion disorder; no anticipation reported.
  • Germline mosaicism: ⚠️ not reported. De novo variants are presumably possible but undocumented.
  • Founder effects: ⚠️ none identified. The recurrent c.1914_1915delAG in two families (M641, 290100) may represent a shared haplotype or a mutational hotspot — unresolved in the source.
  • Consanguinity: not relevant (dominant). Note that homozygous Ganab loss is embryonic lethal in mouse (§15), so a human biallelic PKD3 phenotype is unlikely to exist.
  • Carrier frequency: the concept does not apply to a dominant disorder; the relevant quantity is population allele frequency of pathogenic variants (see below).

Epidemiology

⚠️ No direct prevalence estimate for PKD3/ADPKD-GANAB exists. What can be said:

Quantity Value Source
GANAB as a fraction of all ADPKD ~0.3% — "∼3% of GUR ADPKD-affected families (~0.3% total ADPKD)" Porath 2016 (full text; ⚠️ verify)
GANAB as a fraction of ADPKD <0.5% GeneReviews NBK1246
Detection rate in a mixed ADPKD/ADPLD referral cohort ~1% — "In our study population the detection rate of bona fide pathogenic GANAB variants is ~ 1%" (8 of 625: 7 ADPLD, 1 ADPKD) van de Laarschot 2020, PMC7585303
Genetically unresolved fraction that GANAB helped close 7–10% of ADPKD families and ~50% of ADPLD families were GUR before 2016 Porath 2016 abstract
Derived ballpark PKD3 prevalence ~0.03–0.05 per 100,000 if 0.3–0.5% of an ADPKD point prevalence of 3–5/10,000 ⚠️ Derived, not measured — mark as an estimate

Anchor figures for context (label as ADPKD-general, not PKD3): - ADPKD point prevalence 3–5 per 10,000 in recent epidemiologic studies; classic lifetime risk ~1 per 1,000 (Lanktree 2018). - Population-sequencing lower bound for lifetime ADPKD prevalence: 9.3 cases per 10,000 sequenced (Lanktree 2018) — higher than clinical ascertainment, the direct evidence for unrecognized mild disease. - Isolated ADPLD prevalence ~1/100,000 (Orphanet ORPHA:2924).

Prevalence curation guidance (per CLAUDE.md §8): use measure_type: POINT_PREVALENCE with prevalence_class: BELOW_1_IN_1000000 for the derived PKD3 figure, put the derivation in notes, and do not put a rate_per_100000 that implies measurement precision the literature does not support. CASES_IN_LITERATURE is arguably the more honest measure_type here — on the order of 30–40 reported families.

Population demographics

  • Ethnic/geographic distribution: reported families are of European ancestry (US Mayo/HALT/CRISP cohorts, French Genkyst, Dutch, Italian) plus scattered single cases. ⚠️ This is ascertainment, not biology — GANAB screening has been performed almost exclusively in European-ancestry ADPKD cohorts, so the apparent distribution is an artifact.
  • Sex ratio: ~1:1 for inheritance. But severe liver disease is female-predominant across PLD generally — "Women are predominantly affected and have a larger number of cysts than affected males" (Orphanet ORPHA:2924) — and van de Laarschot's 8 carriers were 6 female, mean age 56 (range 31–79). ⚠️ Small n; do not overstate.
  • Age distribution of affected individuals: diagnosis clusters in the 4th–7th decades; the Porath carriers spanned ages 9–78 years (⚠️ full-text extraction, verify).

10. Diagnostics

The diagnostic problem, stated plainly

PKD3 is not diagnosable by phenotype alone. Its imaging appearance is a mild/atypical cystic kidney with liver cysts — which overlaps with simple cysts, early PKD2, IFT140-related disease, ALG5/ALG8/ALG9 disease, ADTKD, and localized cystic disease. The diagnosis is molecular, made by a multigene panel.

Imaging

  • Kidney ultrasound — first line. The Pei unified criteria (Pei et al., J Am Soc Nephrol 2009, PMID:19118147) apply to at-risk individuals with a positive family history: ≥3 cysts (uni- or bilateral) at ages 15–39; ≥2 cysts in each kidney at 40–59; ≥4 cysts in each kidney at ≥60. Exclusion in an at-risk individual ≥40 requires fewer than 2 cysts. ⚠️ These criteria were derived and validated in PKD1/PKD2 families and are of uncertain sensitivity in GANAB carriers, whose cyst counts are low by definition — a real and citable limitation.
  • MRI / CT — required for height-adjusted total kidney volume (htTKV) and Mayo Imaging Classification, and for characterizing liver cyst burden and planning intervention. GANAB carriers frequently land in MIC class 2 (atypical), in which the class-1 progression model does not apply.
  • RadLex/imaging: abdominal MRI without and with contrast; T2-weighted sequences for cyst enumeration.

Laboratory tests

Non-specific: serum creatinine and eGFR (LOINC 33914-3 / 2160-0), urinalysis, urine albumin-to-creatinine ratio, liver panel (ALP and GGT may be elevated with high cyst burden; synthetic function usually preserved), CBC. There is no biomarker and no clinical enzyme assay for glucosidase II activity.

Genetic testing — the decisive modality

  • Recommended approach: a PKD/cystic-kidney multigene NGS panel including PKD1, PKD2, GANAB, DNAJB11, IFT140, ALG5, ALG8, ALG9, PRKCSH, SEC63, SEC61B, LRP5, PKHD1, HNF1B, NEK8. GeneReviews recommends "a multigene panel that includes GANAB along with PKD1, PKD2, and other associated genes."
  • Sequence analysis detects >95% of GANAB pathogenic variants (GeneReviews).
  • Deletion/duplication analysis (CNV calling) must be included — Wilson et al. 2020 reported a large GANAB deletion explaining PKD/PLD (PMID:32405593). ⚠️ GeneReviews' table stating no GANAB del/dups is out of date on this point.
  • WES/WGS: WES was the discovery modality (Porath 2016; Besse 2017) and is appropriate for panel-negative cases. WGS additionally captures non-coding variants — at least one non-coding GANAB variant explains PCLD in a large family (PMC5805583).
  • Single-gene GANAB testing: appropriate only for cascade testing of a known familial variant.
  • Not indicated: chromosomal microarray, karyotype, FISH, mtDNA testing, repeat-expansion testing.
  • ⚠️ PKD1 pseudogene caveat: any panel must handle the six PKD1 pseudogenes correctly, since excluding PKD1 is a prerequisite for calling a GANAB case.

Omics-based diagnostics

⚠️ None validated. RNA-seq could in principle resolve the splice variants (c.2002+1G>C, c.2690+2_+7del, c.39−1G>C) but no RNA-based diagnostic workflow has been published for GANAB.

Clinical criteria and differential diagnosis

No PKD3-specific criteria exist. Diagnosis = ADPKD/ADPLD clinical-radiologic picture + a pathogenic GANAB variant. Cornec-Le Gall et al. propose the composite phenotype-plus-genotype designation:

"We therefore propose categorization of patients with a phenotypic and genotypic descriptor that will clarify etiology, provide prognostic information, and better describe atypical cases. In genetically defined cases, the designation would include the disease and gene names... Including a genic (and allelic) descriptor with the disease name will provide outcome clues, guide treatment, and aid prevalence estimates." — PMID:29038287

Differential diagnosis, with distinguishing features:

Condition Distinguishing feature
ADPKD-PKD1 Innumerable bilateral cysts, marked kidney enlargement, ESKD median ~54 y
ADPKD-PKD2 Milder than PKD1, ESKD median ~78 y — clinically the closest mimic; separated only by genetics
ADPKD-IFT140 Mild, ~2% of ADPKD-spectrum cases, often no family history, generally favorable prognosis
ADPKD-DNAJB11 Small kidneys, interstitial fibrosis, ADTKD-like overlap
ALG5 / ALG8 / ALG9 disease Same glycosylation-machinery theme; ALG9 can show early kidney enlargement
Isolated ADPLD (PRKCSH, SEC63, SEC61B, LRP5) Liver-only; but GANAB also causes this — genetics is the only separator
ARPKD / PKHD1 carrier state Heterozygous PKHD1 carriers can present with adult PCLD (Besse 2017)
ADTKD (UMOD, MUC1, HNF1B) Few cysts, tubulointerstitial fibrosis, gout (UMOD), hypomagnesemia/diabetes (HNF1B)
Simple renal/hepatic cysts Age-related, non-familial, ≤2–3 cysts
Acquired cystic kidney disease In dialysis patients; small kidneys
Tuberous sclerosis / VHL Extrarenal tumor syndromes; angiomyolipomas / hemangioblastomas

Screening

  • Cascade screening of at-risk first-degree relatives — targeted testing for the known familial variant is preferred over imaging, given the low cyst counts.
  • No newborn screening. Not appropriate: adult onset, mild course, no preventive intervention available in childhood.
  • No population carrier screening. Not indicated for a dominant, low-penetrance, mild disorder.
  • ⚠️ Ethical note worth capturing: predictive testing of asymptomatic minors is generally not recommended for adult-onset ADPKD; the mildness of the GANAB phenotype strengthens that position.

11. Outcome / Prognosis

Survival and mortality

⚠️ No survival, life-expectancy, or mortality data exist for PKD3. No registry, no cohort, no actuarial estimate. Any number entered here would be fabricated.

What is defensible: because kidney failure is uncommon and the kidney phenotype is mild, the ADPKD mortality model (dominated by ESKD and cardiovascular disease) is not obviously transferable, and life expectancy in GANAB carriers with kidney-limited disease is plausibly near-normal — but this is inference, not evidence, and should be flagged as such.

Morbidity and function

  • Kidney: low morbidity. Kidney function preserved in most carriers; ESKD not reported in the discovery cohort.
  • Liver: the dominant morbidity, and it can be severe — liver resection and liver transplantation are both documented in GANAB carriers. Hepatic morbidity in PLD is mass-effect morbidity: pain, early satiety, malnutrition, dyspnea, portal hypertension in advanced cases.
  • Disability outcomes / ICF: no data.
  • Quality of life: no GANAB-specific instrument data (see §3).

Complications

Kidney: hypertension, hematuria, nephrolithiasis, cyst hemorrhage, cyst infection, chronic pain. Liver: cyst hemorrhage, cyst infection, rupture, compression of the inferior vena cava or portal vein, cholestasis. Vascular: intracranial aneurysm — ⚠️ one family only; not established for the gene.

Prognostic factors

  • Mayo Imaging Classification (class 1C–1E predicts rapid progression) — but note that MIC was derived in typical class-1 morphology, and GANAB disease is usually class 2, where MIC does not apply. The 2025 Cureus case is the exception that makes this worth curating explicitly.
  • Historical eGFR slope (≥3 mL/min/1.73 m²/year decline).
  • Genotype itself: carrying GANAB rather than PKD1 is prognostically favorable — that is the substance of the "genic descriptor" proposal in Cornec-Le Gall 2018.
  • Sex for the hepatic phenotype (female predominance in severe PLD).
  • Prognostic biomarkers: none. The PROPKD score was derived for PKD1/PKD2 and is not validated for GANAB.

12. Treatment

⚠️ There is no GANAB-specific therapy and no GANAB-specific trial. Every item below is ADPKD- or PLD-general and must be curated as such.

Kidney-directed pharmacotherapy

Tolvaptan — selective vasopressin V2 receptor antagonist; suppresses cAMP-driven cyst-cell proliferation and fluid secretion. The only disease-modifying drug approved for ADPKD.

KDIGO 2025 (Kidney Int 2025, KDIGO ADPKD guideline):

Tolvaptan is recommended in adults with ADPKD and eGFR ≥25 mL/min/1.73 m² at risk of rapidly progressive disease, with initiation criteria of Mayo Imaging Classification 1C–1E or historical eGFR decline ≥3 mL/min/1.73 m²/year.

⚠️ The direct implication for PKD3: most GANAB carriers would not meet these criteria, because they are neither MIC 1C–1E nor declining at ≥3 mL/min/yr. The 2025 Cureus case is precisely a report of a GANAB patient who did. This tension — a genotype that usually excludes itself from the only approved therapy — is the most clinically actionable thing in this entry and deserves a mechanistic_hypotheses or discussions node.

Key evidence (ADPKD-general): TEMPO 3:4 (NCT00428948, Torres et al. N Engl J Med 2012, PMID:23121377) and REPRISE (NCT02160145, Torres et al. N Engl J Med 2017, PMID:29105594). ⚠️ Fetch and verify both abstracts before quoting — I did not retrieve them in this session.

Adverse events: aquaresis (polyuria, nocturia, thirst) is dose-limiting; idiosyncratic hepatotoxicity requires monthly then quarterly LFT monitoring. ⚠️ A specific concern in this genotype: KDIGO lists "significant liver disease other than polycystic liver disease" as a contraindication, so a GANAB patient with severe PLD sits at an awkward intersection — worth noting.

Supportive/adjunct: salt restriction and thiazides reduce tolvaptan polyuria (KDIGO 2025); ACE inhibitors/ARBs for blood pressure with a target of ≤110/75 in younger patients with preserved eGFR (HALT-PKD); high water intake.

Liver-directed therapy

  • Somatostatin analogues — octreotide LAR, lanreotide, pasireotide. Reduce liver volume modestly (~3–6%). Olaizola et al.: "Current therapeutic strategies, mainly based on surgical procedures and/or chronic administration of somatostatin analogues, show modest benefits, with liver transplantation as the only potentially curative option" (PMID:35562534).
  • Estrogen avoidance; H2 blockers or PPIs for symptomatic liver cysts (GeneReviews).
  • Surgical/interventional: cyst aspiration with sclerotherapy; laparoscopic fenestration; segmental hepatic resection; liver transplantation — the only curative option, and documented in GANAB carriers.

Kidney replacement

Dialysis and kidney transplantation — standard, but rarely needed in this genotype.

Advanced therapeutics

⚠️ None exist. No gene therapy, gene editing, ASO, siRNA, mRNA, cell therapy, targeted therapy, or immunotherapy for GANAB-related disease. Conceptually, an ER-proteostasis or chemical-chaperone approach aimed at rescuing PC1 maturation is the mechanistically indicated strategy — the Besse and Porath rescue experiments are its proof of concept — but nothing has entered development. Record as a KNOWLEDGE_GAP / mechanistic_hypotheses entry with status: EMERGING, not as a treatment.

Experimental / trials

⚠️ No trial has ever enrolled by GANAB genotype. ADPKD-general trials that would in principle include GANAB carriers: venglustat (NCT04705051, glucosylceramide synthase inhibitor — note its own glycosphingolipid mechanism), and pasireotide LAR in severe PLD (NCT01670110). ⚠️ Verify current status via just fetch-reference NCT… before curating any trial.

NCIT treatment term leads ⚠️

Treatment treatment_term lead therapeutic_agent / modality
Tolvaptan NCIT:C15986 Pharmacotherapy agent: tolvaptan (⚠️ resolve CHEBI/NCIT via OAK); therapeutic_modality: SMALL_MOLECULE
Somatostatin analogue (octreotide/lanreotide) NCIT:C15986 Pharmacotherapy agent: octreotide (⚠️ resolve); therapeutic_modality: PEPTIDE
Antihypertensive therapy (ACEi/ARB) NCIT:C15986 Pharmacotherapy SMALL_MOLECULE
Liver transplantation NCIT:C15289 Organ Transplantation SURGERY
Kidney transplantation NCIT:C15289 Organ Transplantation SURGERY
Hepatic cyst fenestration / resection NCIT:C15329 Surgical Procedure SURGERY
Genetic counseling NCIT:C15240 Genetic Counseling BEHAVIORAL
Dietary sodium restriction / high water intake NCIT:C15447 Dietary Intervention BEHAVIORAL
Supportive/pain management NCIT:C15747 Supportive Care BEHAVIORAL or OTHER

Verify each with uv run runoak -i sqlite:obo:ncit info "l^…" per the repo's term contract.

Pharmacogenomics

⚠️ No GANAB pharmacogenomic data. Tolvaptan is a CYP3A4 substrate — strong CYP3A inhibitors are an absolute contraindication (KDIGO 2025). That is drug-level, not genotype-level, PGx. No CPIC guideline applies.

Personalized medicine

The genotype-guided principle here is precisely Cornec-Le Gall's: knowing a patient is ADPKD-GANAB rather than ADPKD-PKD1-truncating changes surveillance interval, tolvaptan candidacy, reproductive counselling, and living-donor evaluation of relatives. That is the clinical payoff of making this diagnosis at all.


13. Prevention

There is no primary prevention — this is a germline dominant disorder. Prevention is reproductive and secondary/tertiary.

  • Primary prevention: ⚠️ Not applicable. No vaccination, no modifiable-exposure prevention.
  • Reproductive options: genetic counselling (50% transmission risk per pregnancy), preimplantation genetic testing for monogenic disorders (PGT-M), prenatal diagnosis. ⚠️ A real counselling difficulty specific to GANAB: the phenotype is mild and penetrance incomplete, so the proportionality of PGT-M/prenatal testing is genuinely debatable in a way it is not for PKD1-truncating disease. Worth curating explicitly.
  • Secondary prevention: cascade genetic testing of at-risk relatives; abdominal imaging every 1–5 years and blood-pressure monitoring (GeneReviews surveillance).
  • Tertiary prevention (preventing complications): blood-pressure control; adequate hydration; avoidance of nephrotoxins and NSAIDs; treatment of UTIs; estrogen avoidance in symptomatic PLD (GeneReviews); intracranial aneurysm screening — ⚠️ indications are ADPKD-general (family history of aneurysm or SAH, high-risk occupation); there is no evidence base for screening GANAB carriers specifically.
  • Risk stratification: MIC + eGFR slope, with the caveats above.
  • Behavioral interventions: low-sodium diet, adequate water intake, smoking cessation, weight management — ADPKD-general, unproven in GANAB.
  • Public health / environmental interventions: ⚠️ Not applicable.
  • Prophylaxis: none.

14. Other Species / Natural Disease

⚠️ No naturally occurring GANAB-related polycystic disease has been reported in any non-human species. OMIA has no GANAB entry for polycystic kidney disease. This section is close to empty and should be curated that way.

  • Taxonomy of the human disease: Homo sapiens, NCBITaxon:9606.
  • Orthologues: Ganab is broadly conserved across metazoa — mouse Ganab (NCBI Gene 14376 ⚠️ verify), rat, zebrafish ganab, Drosophila, S. cerevisiae GLS2/ROT2. Glucosidase II is one of the most deeply conserved components of ER glycoprotein quality control, and that conservation is itself a mechanistic point: the enzyme is ancient, while its cystic-disease relevance is a vertebrate-specific consequence of having a polycystin client.
  • Breed (VBO): ⚠️ Not applicable — no breed-associated GANAB disease.
  • Naturally occurring PKD in other species — relevant but NOT GANAB: feline ADPKD in Persian and Persian-derived cats is caused by PKD1 c.10063C>A (p.Cys3284Ter) and is the best-known animal ADPKD (OMIA 000807-9685); bull terrier hereditary nephritis and West Highland White Terrier PKD are also PKD1-related. These are Autosomal_Dominant_Polycystic_Kidney_Disease content, not PKD3 content — importing them here would be a Named Entity Confusion error.
  • Comparative pathology: the mouse data (§15) show a species divergence that matters: mouse Ganab haploinsufficiency does not phenocopy human disease. This is a textbook HUMAN_MODEL_MISMATCH rather than a KNOWLEDGE_GAP.
  • Zoonotic potential / cross-species transmission: ⚠️ Not applicable — non-communicable genetic disorder.

15. Model Organisms

The headline finding — and it is a negative one

"Homozygous mutation of the Ganab gene in C57BL/6 mice resulted in early embryonic lethality, and there were no cysts in the kidneys or livers of Ganab +/- mice." … "Homozygous Ganab mutations are lethal in the fetal stage, and Ganab haploinsufficiency does not cause kidney or liver cysts in mice, suggesting that it may not be the causative gene in polycystic kidney disease." — Geng G, Xiao Y, Zhang Y, et al. Ganab Haploinsufficiency Does Not Cause Polycystic Kidney Disease or Polycystic Liver Disease in Mice. Biomed Res Int 2020;2020:7469428. PMID:32550232, doi:10.1155/2020/7469428

The same paper reports that despite ~50% reduction in Ganab protein, "the expression of ADPKD proteins (PC1 and PC2) and acetylated tubulin was not affected" in the heterozygous mice — i.e. the mouse does not even reproduce the cellular intermediate that Porath demonstrated in human cells.

How to curate this. This is exactly the case CLAUDE.md describes for discussions with kind: HUMAN_MODEL_MISMATCH rather than KNOWLEDGE_GAP: evidence exists in the model, and its translational validity to human disease is the open question. Two readings are on the table and the entry should hold both:

  1. Species divergence in dosage threshold — mouse retains enough GIIα activity at 50% to mature PC1, while human PC1 sits closer to a threshold; supported by the human GANAB^+/− cell data showing ~50% PC1-NTR reduction (a measurable deficit that mouse tissue apparently tolerates). Note also that mouse ADPKD models generally require conditional/inducible inactivation and a "third hit" to cyst; a plain heterozygote is a low bar.
  2. The authors' own reading — that GANAB "may not be the causative gene." ⚠️ This is a minority position contradicted by the human genetic and rescue data across four independent cohorts (Porath, Besse, van de Laarschot, plus case reports), but it is in the literature and should be represented rather than suppressed.

For the model link itself: relationship: FAILS_TO_RECAPITULATE, which per CLAUDE.md requires both limitations and evidence — both are available here.

Available and needed models

Model Status
Ganab^−/− mouse (CRISPR/Cas9, C57BL/6) Embryonic lethal — Geng 2020
Ganab^+/− mouse No renal or hepatic cysts — Geng 2020
Kidney/liver-conditional Ganab knockout ⚠️ Not reported. The obvious next experiment, and the right content for a proposed_experiments block
Knock-in of a human missense allele (e.g. p.Arg839Trp) ⚠️ Not reported
Zebrafish ganab ⚠️ Not reported for cystic phenotype
GANAB-null human cell lines The workhorse system. Porath 2016 (GANAB^−/− and ^+/−, PC1/PC2 maturation, ciliary localization, variant rescue); Besse 2017 (comparative PC1 biogenesis across ALG8/GANAB/SEC61B/PRKCSH/SEC63)
Patient-derived iPSC / kidney or liver organoids ⚠️ Not reported for GANAB. A genuine and tractable gap

Applications and limitations

  • What the cell models establish well: the molecular mechanism (PC1 maturation dependence on GIIα), gene-dosage proportionality, and a functional assay for variant classification — the rescue assay separates disease missense variants from neutral ones, which is directly usable as ACMG PS3 evidence.
  • What no model currently supports: cystogenesis in vivo, natural history, organ-specificity (why liver > kidney in many carriers), modifier discovery, and any preclinical therapeutic testing.
  • Resources: MGI (Ganab), IMPC, Alliance of Genome Resources. ⚠️ Check IMPC for a Ganab allele and its viability call — this session did not query it, and IMPC viability data would independently corroborate the Geng lethality finding.

Suggested modeled_mechanisms skeleton

animal_models:
- name: Ganab heterozygous knockout mouse (C57BL/6, CRISPR/Cas9)
  species: Mouse
  genotype: Ganab +/- (CRISPR/Cas9-targeted)
  publication: PMID:32550232
  modeled_mechanisms:
  - target: <the GANAB haploinsufficiency node>
    relationship: FAILS_TO_RECAPITULATE
    fidelity: LOW
    limitations: >-
      Ganab +/- mice develop no kidney or liver cysts and show unaltered PC1/PC2
      expression, so the model reproduces neither the human cystic phenotype nor
      the polycystin-maturation defect demonstrated in human GANAB+/- cells.
      Homozygous loss is embryonically lethal, so a constitutive null cannot be
      assessed postnatally.
    evidence:
    - reference: PMID:32550232
      supports: REFUTE
      evidence_source: MODEL_ORGANISM
      snippet: "<exact quote — fetch via just fetch-reference PMID:32550232>"
      explanation: >-
        Reports the absence of cysts in Ganab+/- mice and embryonic lethality of
        the homozygote, establishing the human/model mismatch.

Consolidated reference list

Citation Identifier Role
Porath B, Gainullin VG, Cornec-Le Gall E, et al. Mutations in GANAB, Encoding the Glucosidase IIα Subunit, Cause Autosomal-Dominant Polycystic Kidney and Liver Disease. Am J Hum Genet 2016;98(6):1193–1207 PMID:27259053 · doi:10.1016/j.ajhg.2016.05.004 Landmark — gene discovery + functional validation
Besse W, Dong K, Choi J, et al. Isolated polycystic liver disease genes define effectors of polycystin-1 function. J Clin Invest 2017;127(5):1772–1785 PMID:28375157 · doi:10.1172/JCI90129 Landmark — ER-biogenesis pathway model
Cornec-Le Gall E, Torres VE, Harris PC. Genetic Complexity of Autosomal Dominant Polycystic Kidney and Liver Diseases. J Am Soc Nephrol 2018;29(1):13–23 PMID:29038287 · doi:10.1681/ASN.2017050483 Nomenclature ("ADPKD-GANAB"), gene list, biallelic disease
Lanktree MB, Haghighi A, Guiard E, et al. Prevalence Estimates of Polycystic Kidney and Liver Disease by Population Sequencing. J Am Soc Nephrol 2018;29(10):2593–2600 PMID:30135240 · doi:10.1681/ASN.2018050493 Prevalence, penetrance
van de Laarschot LFM, et al. Novel GANAB variants associated with polycystic liver disease. Orphanet J Rare Dis 2020;15:302 doi:10.1186/s13023-020-01585-4 · PMC7585303 Cohort screen, ~1% detection rate, 6 variants
Wilson EM, Choi J, Torres VE, Somlo S, Besse W. Large Deletions in GANAB and SEC63 Explain 2 Cases of Polycystic Kidney and Liver Disease. Kidney Int Rep 2020;5(5):727–731 PMID:32405593 · doi:10.1016/j.ekir.2020.01.009 Structural variants
Geng G, Xiao Y, Zhang Y, et al. Ganab Haploinsufficiency Does Not Cause Polycystic Kidney Disease or Polycystic Liver Disease in Mice. Biomed Res Int 2020;2020:7469428 PMID:32550232 · doi:10.1155/2020/7469428 Negative model result / HUMAN_MODEL_MISMATCH
Delbarba E, Econimo L, Dordoni C, et al. Expanding the variability of the ADPKD-GANAB clinical phenotype in a family of Italian ancestry. J Nephrol 2022;35(2):645–652 PMID:34357571 · doi:10.1007/s40620-021-01131-w Variable expressivity, late onset
Olaizola P, Rodrigues PM, Caballero-Camino FJ, et al. Genetics, pathobiology and therapeutic opportunities of polycystic liver disease. Nat Rev Gastroenterol Hepatol 2022;19(9):585–604 PMID:35562534 · doi:10.1038/s41575-022-00617-7 PLD review, therapy
Agrawal G, Agarwal B, Chandrasekhara Pillai A, Kuriakose K. GANAB-Associated Severe ADPKD in an 18-Year-Old Female: A Case Report. Cureus 2025;17(2):e79498 PMID:40134995 · doi:10.7759/cureus.79498 Challenges the mildness assumption
Daoust MC, Reynolds DM, Bichet DG, Somlo S. Evidence for a third genetic locus for autosomal dominant polycystic kidney disease. Genomics 1995;25(3):733–736 PMID:7759112 Historical PKD3 — do not cite as GANAB evidence
de Almeida S, et al. ADPKD: evidence for the existence of a third locus in a Portuguese family. Hum Genet 1995 PMID:7607660 Historical PKD3
Pei Y, Obaji J, Dupuis A, et al. Unified criteria for ultrasonographic diagnosis of ADPKD. J Am Soc Nephrol 2009;20(1):205–212 PMID:19118147 ⚠️ Not independently verified this session
KDIGO 2025 Clinical Practice Guideline for ADPKD. Kidney Int 2025 kidney-international.org Tolvaptan, MIC, management
Harris PC, Torres VE. Polycystic Kidney Disease, Autosomal Dominant. GeneReviews NBK1246 Diagnosis, surveillance, GANAB frequency
OMIM 600666 (PKD3) / OMIM 104160 (GANAB) omim.org ⚠️ Both returned HTTP 403 this session — not directly verified

Curation notes and caveats

Three things must be verified before any of this reaches a YAML file:

  1. Every CURIE above is an unvalidated lead. Nothing was run through just validate-terms. The dismech-terms rule applies in full — no term beats a bad one. The GO molecular-function term for glucosidase IIα activity and the "intracranial aneurysm" HPO term are the two I would flag as most likely wrong.
  2. The Porath variant table and clinical-range figures in §4 and §3 came from automated full-text extraction, not from my own reading of the source. Re-verify each variant, each eGFR/htTKV range, and the "~0.3% of total ADPKD" denominator against the paper before entering them. Similarly, no evidence snippet in this report should be pasted into YAML without first running just fetch-reference PMID:… and confirming the exact substring — several quotes above are abstract text relayed through a fetch tool.
  3. OMIM was not reachable (HTTP 403). The OMIM identifiers, the gene-phenotype assignment, and the clinical synopsis should be confirmed directly.

Two structural recommendations for the entry:

  • The Autosomal_Dominant_Polycystic_Liver_Disease.yaml entry already exists in this repo. GANAB straddles it and Autosomal_Dominant_Polycystic_Kidney_Disease.yaml. Decide deliberately whether PKD3's liver-dominant presentation is curated here, cross-referenced there, or split — and record the reasoning, because a curator six months from now will ask.
  • The ER-protein-biogenesis bottleneck is a module, not a disease-specific mechanism. PRKCSH, SEC63, GANAB, ALG8, and SEC61B all converge on defective PC1 maturation, and Besse 2017 is the paper that says so at pathway level. If no module in kb/modules/ covers it, this is a strong candidate for create-module — and PKD3 would then conforms_to it rather than duplicating the chain. Check first: rg -il "polycystin\|glucosidase\|protein biogenesis" kb/modules.

Next step: confirm the entry-type decision (separate DISEASE vs SUBTYPE of ADPKD), then I can draft the full Polycystic_Kidney_Disease_3.yaml against this report — the current file is a 22-line placeholder with two stub nodes.

Reference Validation

Checked with linkml-reference-validator 0.2.1.

Outcome Count
References checked 27
Resolved 27
Unresolved (possible confabulation) 0
Unverifiable 0
Quoted claims checked 2
Quoted claims found in source 2
Quoted claims not found in source 0
References weighed for topical relevance 27
On topic 20
Off topic 0

All extracted references resolved successfully.

Term Validation

Checked with linkml-term-validator 0.4.5, through the ols: adapter.

Outcome Count
Terms checked 58
Resolved 56
Unresolved (possible confabulation) 0
Obsolete 0
Unverifiable 2
Terms whose name was checked 29
Terms named correctly 27
Terms named as a different term 0
Terms whose name is worth a second look 2

Terms whose name is worth a second look

The report's name for these is recognisably related to the term's own name without being one of them. A loose paraphrase reads the same way as a citation of the wrong sibling term - and so does a related synonym, which the ontology records precisely because it names something adjacent rather than the same thing - so these are listed rather than judged:

  • HP:0003774 (1 mention) - the report calls it "Stage 5 CKD / kidney failure"; HP calls it Stage 5 chronic kidney disease
  • HP:0000787 (1 mention) - the report calls it "Nephrolithiasis"; HP calls it Kidney stone, and lists "Nephrolithiasis" among its other names

Prefixes with no resolver

Terms carrying these prefixes were not checked either way, because no configured ontology covers them. An unrecognised prefix may name an ontology this run could not reach as easily as one that does not exist, so nothing here is evidence of fabrication: ORPHA.

56 of 58 terms resolved to a current term; the rest could not be looked up either way.